Movatterモバイル変換


[0]ホーム

URL:


US6208247B1 - Wireless integrated sensor network using multiple relayed communications - Google Patents

Wireless integrated sensor network using multiple relayed communications
Download PDF

Info

Publication number
US6208247B1
US6208247B1US09/135,762US13576298AUS6208247B1US 6208247 B1US6208247 B1US 6208247B1US 13576298 AUS13576298 AUS 13576298AUS 6208247 B1US6208247 B1US 6208247B1
Authority
US
United States
Prior art keywords
output
data
sensor
programmable microprocessor
signal processor
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
US09/135,762
Inventor
Jonathan R. Agre
Loren P. Clare
5th Henry O. Marcy
Allen J. Twarowski
William Kaiser
Wilmer A. Mickelson
Michael D. Yakos
Christian J. Loeffelholz
Jonathan R. Engdahl
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Skyworks Solutions Inc
Original Assignee
Rockwell Science Center LLC
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Rockwell Science Center LLCfiledCriticalRockwell Science Center LLC
Priority to US09/135,762priorityCriticalpatent/US6208247B1/en
Assigned to ROCKWELL SCIENCE CENTER, LLCreassignmentROCKWELL SCIENCE CENTER, LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: AGRE, JONATHAN R., CLARE, LOREN P., MARCY, HENRY O., TWAROWSKI, ALLEN J., LOEFFELHOLZ, CHRISTIAN J., MICKELSON, WILMER A., YAKOS, MICHAEL D., ENGDAHL, JONATHAN R.
Application grantedgrantedCritical
Publication of US6208247B1publicationCriticalpatent/US6208247B1/en
Assigned to BRUGGERE, THOMAS, AS SECURED PARTY, HUMMER WINBLAD VENTURE PARTNERS COLLATERAL AGENT AND AS A SECURED PARTY, HUMMER WINBLAD TECHNOLOGY FUND, IV, L.P., AS SECURED PARTYreassignmentBRUGGERE, THOMAS, AS SECURED PARTYGRANT OF SECURITY INTEREST PATENTSAssignors: SENSORIA CORPORATION
Assigned to HUMMER WINBLAD VENTURE PARTNERS IV, L.P.reassignmentHUMMER WINBLAD VENTURE PARTNERS IV, L.P.SECURITY AGREEMENTAssignors: SENSORIA CORPORATION
Assigned to ROCKWELL TECHNOLOGIES, LLCreassignmentROCKWELL TECHNOLOGIES, LLCASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: ROCKWELL SCIENCE CENTER, LLC
Assigned to INNOVATIVE TECHNOLOGY LICENSING, LLCreassignmentINNOVATIVE TECHNOLOGY LICENSING, LLCCHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: ROCKWELL TECHNOLOGIES, LLC
Assigned to ROCKWELL SCIENTIFIC LICENSING, LLCreassignmentROCKWELL SCIENTIFIC LICENSING, LLCCHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: INNOVATIVE TECHNOLOGY LICENSING, LLC
Assigned to TELEDYNE LICENSING, LLCreassignmentTELEDYNE LICENSING, LLCCHANGE OF NAME (SEE DOCUMENT FOR DETAILS).Assignors: ROCKWELL SCIENTIFIC LICENSING, LLC
Assigned to SKYWORKS SOLUTIONS, INC.reassignmentSKYWORKS SOLUTIONS, INC.ASSIGNMENT OF ASSIGNORS INTEREST (SEE DOCUMENT FOR DETAILS).Assignors: TELEDYNE LICENSING, LLC
Anticipated expirationlegal-statusCritical
Expired - Lifetimelegal-statusCriticalCurrent

Links

Images

Classifications

Definitions

Landscapes

Abstract

Wireless integrated miniature sensing stations which can be organized into a communicating network allow sensitive detection and analysis of vibration, infrared radiation, sound, or other physical signals indicative of an intruder or condition to be monitored over a wide area. The sensing stations operate on low power and include a sensor or sensors, a digital signal processor, a microprocessor, and a wireless transceiver for communication. Network communication is facilitated by multiple relayed transmissions from station to station.

Description

BACKGROKUND OF THE INVENTION
1. Field of the Invention
The invention relates to wireless telemetry, security networks, or monitoring of physical conditions. In particular, the invention relates to the remote detection, monitoring or tracking of vehicles, personnel, or other physical conditions, for example in industrial equipment monitoring and control systems.
2. Description of the Related Art
Sensor networks have numerous applications, such as security, industrial monitoring, military reconnaissance and biomedical monitoring. In many such applications it is either inconvenient or impossible to connect the sensors by wire or cable; a wireless network is preferable.
Seismic sensors, for example, can be used to detect intrusion or movement of vehicles, personnel or large earth masses. For example, U.S. Pat. No. 4,649,524 to Vance (1987) describes an integrated acoustic network which provides warning of impending groundfall in underground mines. The system includes a plurality of geophones which derive acoustic signals from which the source of seismic disturbances is located, and an array of high frequency piezoelectric sensors which pick up signals from small ground disturbances which precede groundfall.
The detection of vehicles and personnel is more difficult than detecting large signals, as from earthquakes or movement of earth masses. Quiet vehicles and personnel movement produce seismic signals which may not be detectable by geophones at ranges of more than tens of meters, particularly in the presence of background noise. The reliable detection or tracking over large areas thus requires very large numbers of sensitive detectors, spaced closely. The placement of such large numbers of conventional detectors is generally inconvenient, expensive and time consuming if they must be wired for communication or power supply. A wireless network of numerous sensitive, low cost, low powered sensor stations would be more desirable.
Wireless networks of sensor stations, however, present several technical challenges. Wireless communication generally requires higher power than wired communication over the same distance; but an individual wireless sensor station requires a limited, self- contained power supply, which usually dictates that it conserve energy. The resulting low power constraint severely limits the range of wireless transmission by an individual sensor station. There are other drawbacks: wireless communication is vulnerable to jamming or unintentional interference. It is also overt in that the source of a transmission can be located by a hostile agent. If control or data processing occurs at a central location, then the entire network is vulnerable to failure of the central processor. Such an architecture has low reliability and cannot easily survive in a hostile environment. Wireless communication among large numbers of densely placed sensor stations requires sophisticated multiplexing or scheduling to avoid cross-interference. If the stations are placed randomly or some have initially unknown locations, it is difficult to learn the topology of the network so that multi-hop communications (communications relayed among multiple stations) may be scheduled.
Wireless security devices, such as wireless alarms, are widely available. Such systems generally employ only one-way wireless communication. For example, Brunius, U.S. Pat. No. 4,855,713 describes a system in which one-way alarm transmitters report to a central processing unit (CPU). The system even permits the CPU to detect new alarm transmitters and add them to the programmed system. Such systems are limited by one-way communication from the alarms to the central control. This limits their flexibility and utility, because it is impossible to remotely reprogram or adapt the network of sensors to a changing environment or a new purpose. An additional problem in the patented system is that the alarm transmitters must each have sufficient power to be received by the central receivers, or a repeater must be provided. This requires relatively high power to cover a significant area. The number of possible transmitters is also limited to the number of communication channels available; otherwise, simultaneous transmissions on the same channel will interfere with one another and be unintelligible. This system cannot be extended to permit a truly distributed, multihop network containing very high numbers of densely placed, low power sensor stations.
Another shortcoming of prior detection and alarm systems is that very little signal processing of the alarm condition is available at the sensor station, especially with wireless systems. This makes it difficult to distinguish among relevant, urgent or irrelevant signals unless the entire signal is transmitted, which would require a large expenditure of energy.
SUMMARY OF THE INVENTION
The invention is a miniature electronic sensing station, adaptable for two-way wireless communication in a network with other similar sensing devices, for sensing events such as an intrusion, vehicle movement, a change in status of some industrial process, or any physical change that can be detected by the sensors. Deployment in a network allows monitoring of the spatial extent and distribution of the sensed condition. Each sensing station in the network includes one or more sensors; a digital signal processor for analyzing the data from the sensors; a programmable microprocessor for making decisions based upon the analyzed data, and for controlling communication functions; a power supply; and a wireless transceiver, for communicating with other sensing devices in the network and with users. All of the components of the sensing station are enclosed in a single package and collectively constitute a “node” of the network. In a typical application a network of such nodes may contain large numbers of such sensing nodes (more than 100), spaced fairly closely together (typically within less than 100 yards). The nodes can be placed randomly. They could, for example, be dropped from an aircraft or a ship; they could be placed manually. It is not necessary for each node to have a known location before startup; the nodes are programmable to organize themselves in a distributed fashion. Control of the network is distributed among the nodes; no indispensable central controller is necessary.
The invention preferably is used in a large network of wireless nodes, each of which is very compact and has a very limited power supply. The limitation on available power makes low power consumption an objective at every level of the invention. The practical implementation of this network architecture depends on several features which cooperate in a synergistic manner to allow effective, low powered sensing and wireless communication. At the node level the invention uses low powered sensors, low powered digital signal processing, a micropower programmable microprocessor, and a low powered RF transceiver, all cooperating in an architecture well adapted to conserve energy. At the network level, the design also conserves energy by fully utilizing the large number of nodes and low powered short range multi-hop communication in a web-like network.
Two techniques are used at the node level as energy conserving motifs: (1) circuits which are not required to be active during a time window are held in an inactive “sleep mode” so as to conserve energy, and (2) whenever possible, data is processed, compressed or summarized before transmission. This latter technique is effective because wireless transmission consumes vastly more energy than computation, especially where low power complementary metal oxide semiconductor (CMOS) circuitry can be used for computation.
The sensor or sensors may be of several types, such as seismic, acoustic, infrared, thermal, optical, magnetic or mechanical (for example, an accelerometer). The invention includes realizations of micro-seismic and micro-infrared sensors, but other sensors could also be used, as long as they consume low power and are small.
The sensor may include a sensing device that produces an analog output indicative of the sensed condition, coupled with an analog-to-digital converter (ADC) that digitizes the analog output. The ADC operates at low duty cycle and is preferably a Σ-Δ converter, consuming very low power. The ADC displays low switching activity in the absence of a change in input signal level. It thus operates at minimum power for normal operation in the absence of a “threat” signal.
The digitized signal from the ADC is processed by a low power digital signal processor which analyzes power spectral density in selected bands. The power spectral density of the signal is then compared to a profile and a decision is made based on the result of the comparison. When the spectral density of the signal exceeds the threshold profile, the output of a series of comparators causes the programmable microprocessor to “wake up” and go from its power conserving state to a higher power operating state. The microprocessor then decides what action to take: whether to perform more signal processing and analysis, to activate the transmitter, to transmit the spectral density of the signal, to transmit the raw signal data or perhaps to do nothing, depending on the signal and the programming of the microprocessor.
The microprocessor is preferably adapted to conserve power by not continuously operating in the usual sequence of instruction fetch and decode operations. Rather, it is only activated for critical, low duty-cycle windows and when a decision is required based on an event.
The wireless transceiver allows the node to communicate with other nodes (including user nodes, which provide communication with the user) when it is enabled by the microprocessor. The invention preferably uses low power radio frequency (RF) circuitry. In one embodiment, the RF transceiver is designed to consume minimal power when not in demand, but to turn on and off quickly as required.
Power is also conserved at the network level by organizing the nodes to communicate by a multihop method, relaying messages through a series of short, low power RF transmissions or “hops,” rather than by long, high power jumps. The nodes may be programmed to organize themselves into a communication topology so as to enable wireless communication throughout the network, using a time division multiple access (TDMA) scheme. TDMA is preferred because it allows transceivers to remain in a power conserving, off state for periods of time when not in use, turning on only for short bursts. Because each node has a very short range, multiple nodes may use the same channel simultaneously, so long as the simultaneous users are out of range of one another. This enables reuse of wireless communication channels and makes it possible for a large number of nodes to communicate on a relatively small number of channels.
The ability to use two-way wireless communication enables the network to respond to changes in environment or changes in command priorities. Each node can be reprogrammed by wireless transmissions relayed through the network. For example, new spectral profiles can be entered, or nodes can be reprogrammed for a higher duty cycle during critical periods of activity. Loss of nodes or the addition of new nodes can be accommodated easily.
The invention also benefits from a high degree or integration of the components--sensors, micropower control processor, ADC, wireless transceiver, and signal processor-into a compact package. Relative ease of manufacture and compact, durable packaging make practical the deployment of large numbers of short range, densely placed wireless sensor nodes.
BRIEF DESCRIPTION OF THE DRAWINGS
FIG. 1 is a perspective view of one embodiment of an electronic sensing station or “node” of the invention;
FIG. 2 is a perspective view of a network of nodes deployed in a landscape;
FIG. 3 is a block diagram showing the architecture of an exemplary node;
FIG. 4 is a block diagram of a digital signal processor that can be used with the invention;
FIG. 5 is a block diagram of one realization of a four pole digital filter in IIR form that can be used in the digital signal processor to extract spectral power information from the sensor data;
FIG. 6 is a graph showing the frequency responses of selected digital bandpass filters realized according to FIG.5 which can be used with the invention;
FIG. 7 is a flow chart showing the control activities performed by a microprocessor used in the invention;
FIG. 8 is a timing diagram showing a possible subdivision of a repeating time frame which can be used by the invention to allow multiple access node communications; and
FIG. 9 is a block diagram of a wireless transceiver which can be used with the invention.
DETAILED DESCRIPTION
The invention is a highly integrated, miniature electronic sensing station which is specially adapted for use with other such sensing stations in a wireless, communicating network. The station and the network of which it is a part can be used for sensing conditions or events such as an intrusion, vehicle movement, a condition or change in status of some industrial process, or any physical change or condition which can be detected by the sensors. Because they function as members of a network, the sensing stations will hereinafter be referred to as “nodes” in recognition of their similarity to nodes in a communication network or graph.
FIG. 1 shows one possible realization of a single device or node, as it might be deployed in terrain. The node includes anenclosure1, which houses and provides environmental protection for the functional components (shown in phantom) including circuitry2 and power supply (batteries)3. Anantenna4 is mounted atop theenclosure1, for transmitting and receiving radio signals. Although theantenna4 is shown as a vertical dipole with artificial groundplane, other configurations may be used, including internal covert antenna loops or even an integrated antenna element. The exterior shape of thenode housing1 could also be varied to take almost any shape, as the application demands. The dimensions of thehousing1 can be varied, with the minimum size limited only by the degree of integration and miniaturization of the circuitry2 andpower supply3.
FIG. 2 shows an example of how the nodes might be deployed in terrain. The nodes can be dropped, for example from an aircraft, a ground vehicle, or even by walking personnel. Individual nodes6 are scattered in a more or less random fashion, but are able to establish wireless radio communication, as indicated by the dottedlines7, collectively forming a network.
FIG. 3 shows an architecture for an individual node. Local environmental conditions or changes are sensed by a sensor orsensor arrays12. In the typical case in which the sensor(s) produce an analog signal or signals, an analog-to-digital converter (ADC)14 is provided to digitize the data from the sensors. The data is stored for processing in abuffer memory16. A digital signal processor (DSP)18 (which preferably includes abuffer16, aspectrum analyzer17, a multi-channel sum of squares accumulator80 and threshold comparators19) filters and analyzes the stored data to improve signal-to-noise ratio and extract information regarding the amplitude and spectral characteristics of the sensor data. After filtering, theDSP18 compares the characteristics to user-programmed profiles, and presents the results of the comparison to amicroprocessor20. Themicroprocessor20 makes decisions based upon the information from theDSP18. For example, if certain low frequency signals are detected, indicating a vehicle, it may cause awireless transceiver22 to transmit a warning. Themicroprocessor20 can if required perform additional signal processing and analysis (for example, a Fourier transform analysis) of the data, or by reconfiguringDSP18 to more closely examine specific spectrum bands. In addition, themicroprocessor20 can be responsible for controlling and scheduling communications with other nodes and/or users, or a second microprocessor can be provided for controlling awireless transceiver22 to perform those functions.
Many of the functions of the node, including signal processing, decision making and communication management, could be performed by separate dedicated microprocessors. Although the invention encompasses multiple microprocessor embodiments, for the sake of simplicity the figures show only onemicroprocessor20 performing various functions. As used herein,microprocessor20 should be understood to symbolize and refer to at least one microprocessor.
Thetransceiver22, controlled bymicroprocessor20, provides communications with anetwork32 of other nodes and with a user orusers34. Communications are two-way: data (spectral or time domain) or instructions can be transmitted or received. The received data or instructions are stored by themicroprocessor20 and can be used to modify the programming of either themicroprocessor20 or theDSP18. The invention is preferably used in a network of numerous nodes with limited power supplies: typically battery or solar cell. Low power consumption is thus preferred. At the node level power consumption is reduced by using circuitry which can frequently be held in an inactive “sleep mode” when not immediately required. The nodes also conserve energy by summarizing or analyzing data and then transmitting only the summary or result, rather than the raw data. This technique, sometimes call “pre-processing,” is effective because computation can be performed (for example, by CMOS logic) with much lower power consumption than wireless transmission of data. At the network level, communications are preferably scheduled and routed to exploit low powered, multiple hop relayed communications.
In the preferred embodiment, the several component subsections of the node (thesensors12, theADC14, theDSP18, themicroprocessor20 and the wireless transceiver22) are all fully integrated on achip24, powered by apower supply3 and housed in anenclosure1. Such integration enables low cost manufacture and an extremely compact package. However, greater or lesser degrees of integration are possible and the resulting nodes are also within the scope of the invention.
The detailed operation and structure of the node's subsections will be discussed in sequence, beginning with thesensors12.
A. The Sensors:
The sensor system must identify a signal in the presence of environmental noise. Source signals (such as seismic, infrared, thermal, optical, acoustic, mechanical, and others) all decay in amplitude rapidly with distance from the source. To increase the detection range, sensor sensitivity must be increased. In addition, due to the fundamental limits of background noise, a maximum detection range exists for any sensor. Thus, it may be desirable to obtain the greatest sensitivity and to utilize compact sensors that may be distributed both widely and densely. In addition, in some applications it is desirable to integrate multiple sensors (with varying characteristics) with the signal processing, control, and wireless transceiver portions of the node, thus increasing the information available from that node.
Integration of the sensors with the other electronics is preferably accomplished by conventional “flip-chip” bonding. In the “flip-chip” process a sensor die and a CMOS interface die are each fabricated. The CMOS interface die is then flipped and bonded to the sensor die, which typically includes the bulk micro-machined sensor structures. This process allows modular processing: the fabrication of the sensor die (with materials incompatible with CMOS processing) is separated from CMOS fabrication. Thus, high performance piezoelectric and pyroelectric actuator and sensor materials may be integrated with CMOS measurement and control systems without interference with CMOS fabrication.
Typical sensors which could be used in the invention are disclosed by U.S. Pat. No. 5,659,195 to William J. Kaiser. This patent discloses, for example, a CMOS integrated microaccelerometer which could be used as a seismometer or vibration sensor. Integrated microacoustic sensors and thermoelectric sensors are also disclosed by the patent. Another thermal infrared sensor suitable for use with the invention is a high sensitivity thin-film radiation thermopile sensor described by David T. Chang in “Micropower High-Detectivity Infrared Sensor System,”Solid State Sensor and Actuator Workshop(Technical Digest), TRF cat. no. 98TRF-001, Lib. of Congress no. 98-60214, ISBN no. 0-9640024-2-6, pp. 205-208 (1998). Such devices are well suited to large scale integration with the other components of a node of the present invention; however, non-integrated sensors such as geophones, acoustic detectors, thermal sensors, photoelectric detectors, or even mechanical transducers can be employed either together with or as alternatives to integrated sensors.
B. The ADC:
In a typical embodiment of the invention shown in FIG. 3 the sensors produce analog signal outputs. AnADC14 must then be provided to convert the sensor output to digital form for processing. A Σ-Δ architecture is suitable for use in the ADC for the invention, as it provides low power and low noise operation. Although the low power constraint discourages the use of flash, pipelined, and sequential approximation architectures, any ADC architecture could be used provided that it has sufficient bandwidth and resolution for the sensor data of interest, and further provided that the ADC power consumption is not inconsistent with available power and power supply lifetime considerations.
C. The DSP:
TheDSP18 analyzes the amplitude and spectral characteristics of the signal acquired by the sensors, while improving signal-to-noise ratio for signals within spectral regions of interest. TheDSP18 can then compare amplitude and spectral characteristics of the signal with spectral profiles (either stored or communicated from a network). The results of the comparison, the spectral data, and the raw signal data are made available to themicroprocessor20. This data can be combined by themicroprocessor20 with data from other sensors, if multiple sensors are provided on the node, to extract clues as to the identity, number, size, distance and direction of the signal source (or sources).
TheDSP18 is preferably implemented with emphasis on low power. Signal processing rate may reasonably be sacrificed to enable low power continuous operation, because the bandwidth of typical sensor systems is low, for example approximately 100 Hz for a seismic vibration sensor.
FIG. 4 shows one example of an appropriate architecture for theDSP18. In the embodiment shown, a low sampling rate, resulting from band-limited sensor response, allows the DSP unit to operate at low clock frequency (less than 100 KHz). Because the sensor signals are slowly changing, the DSP may effectively be reconfigured to reprocess the sensor signals in the event of overflow or unusual signal events. The illustrated DSP unit contains aclock divider50 to divide a clock pulse train from clock51 (which may operate at a frequency on the order of 100 Khz) down to a lower sampling rate which is appropriate to the sensor data of the specific application. The resulting lower clock rate is used byADC14 to trigger sampling of the sensor signal. The input end of the DSP can be the last stage of a Σ-Δ ADC. An up-down counter52 counts pulses output by a Σ-Δ ADC14. Aunidirectional counter56 controls the resolution of theADC14 by setting the length of time in each cycle during which counter52 will count pulses. The output ofcounter52 is then converted byconverter53 to two's complement representation with an offset of128, for the purpose of centering the filter output around zero, and the resulting data is stored in abuffer16.
The data stored in thebuffer16 is next processed by aspectrum analyzer17 which is preferably a bank of digital filters. Each of the digital filters may be realized as an eight-channel, eight bit infinite impulse response (IIR) digital filter. In order to reduce the effect of truncation error, a cascaded structure of two second order IIR filters can be used, providing a four pole bandpass filter.
FIG. 5 shows a suitable four-pole configuration, a conventional direct form II realization suitable for use as a single channel of the multiple channel digital filter bank. In accordance with common convention, each of the triangles (such as61) indicate multiplication by a specific coefficient (stored in coefficient memory81 on FIG.5. Circles such as62 with a+sign indicate a summation. Boxes such as64 marked by Z−1indicate a memory register storing the input value latched in on the previous clock cycle. Thus, the input sensor data byte at aninput terminal65 is summed at asummation junction66 with a number calculated by summing atsummation junction68 the contents of tworegisters63 and64 multiplied respectively bycoefficients70 and72. The summed output ofsummation junction66 is multiplied bycoefficient61 and summed atsummation junction62 with the output ofsummation junction74, which sums the contents ofregisters63 and64, multiplied respectively bycoefficients76 and78. The output ofsummation junction66 is then clocked intoregister63 at the end of the clock cycle, at which time the contents of63 are clocked intoregister64. (register64 thus always holds the previous clock cycle's value fromregister63.) The process is repeated with the next data byte in sequence.
The choice ofcoefficients61,70,72,76 and78 for each channel determines the shape, bandwidth, and center frequency of the resulting filter function and may be calculated according by methods well known in the art. The coefficients for each spectral band are stored inmemory21. Themicroprocessor20 can dynamically change the coefficients stored inmemory21, thus providing a way to dynamically reconfigure or program thespectrum analyzer17.
FIG. 6 shows the frequency response of three exemplary bandpass filters realized in the form shown in FIG. 5, each ten Hz wide, with passband center frequencies at 5Hz, 25 Hz, and 45 Hz and an input byte rate of 100 Hz.
Thespectrum analyzer17 made up of multiple channels of bandpass filters enables spectral analysis of the input signal, by producingmultiple outputs84 each representing the spectral power density within a specific frequency band. The bandpass filters may be implemented in parallel, or arithmetic units (multipliers and adders) may be shared, saving power and chip area.
The output of thespectrum analyzer17 is preferably accumulated in a sum-of-squares (SSQ)accumulator80 in FIG. 4, with multiple frequency slots. In one embodiment, multiplexing allows the channels of theSSQ accumulator80 to share a single multiplier and accumulator. Multiple separate register words accumulate the SSQ values of the multiple channels respectively. After accumulation, the SSQ values are placed consecutively on an output port to thethreshold comparators19.
Thethreshold comparators19 compare each of the multiple outputs of the SSQ accumulator with thresholds stored inmemory21. The multiple outputs may be compared sequentially, using a multiplexer to sequentially compare each SSQ value to the corresponding programmed threshold. If any SSQ value falls outside of programmed parameters, for example, if it is greater than or equal to its corresponding stored threshold value, an interruptbit83 is set to request attention from the microprocessor20 (also shown in FIG.3). The power spectral densities accumulated byaccumulator80 and/or the time domain data stored in buffer57 are also made available to themicroprocessor20 on demand from the microprocessor.
The above described apparatus for comparing an analyzed spectrum to a profile provides a way of identifying signals. For example, large heavy vehicles producing a distinctive low frequency rumble can be distinguished from other types of signal sources by reference to a pre-programmed frequency profile. In other applications, for example industrial control, it may be desirable to detect when a signal falls below a threshold, as for example when a motor fails; thethreshold comparators19 would in that case be configured to produce an interrupt output when the signal falls below the appropriate threshold.
The digital bandpass filter spectrum analyzer described above offers a simple and low power method of signal analysis; however, other methods including but not limited to Fourier transform and wavelet analysis are also possible and are within the scope of the invention. The spectrum analysis could be performed bymicroprocessor20 in some embodiments, or by a separate microprocessor provided for that purpose. Such variations are also within the scope of the invention.
C. The Microprocessor:
Themicroprocessor20 provides essential control, logic, and programming functions for the node. In addition to making decisions based upon the sensor data, it handles multiple tasks including communication scheduling, topology learning for the network, maintenance and updating of routing tables, calculation of range relative to neighbor nodes or targets, storage of data and relaying of communications between nodes and to or from auser34.
All of the functions involved in communication scheduling and topology learning are controlled by the (at least one) node microprocessor. The microprocessor at each member node may, for example, have stored matrices identifying other network member nodes, their connecting communication links and scheduled time slots for transmission and reception, and their locations.
Themicroprocessor20 may be any of a number of suitable commercially available microprocessors, but should preferably be chosen for low power and flexible power management functions, low cost, and adequate processing capability. For example, candidates would include the AMD “186ER,” available from Advanced Micro Devices Corp., or a low power “80186” family processor from Intel. The microprocessor should preferably be capable of temporarily operating in a low power, “sleep” mode, from which it can be “awakened” by an interrupt (generated from, for example, detection of an interesting signal). An application specific processor could be used; in such a case the design should emphasize low power and the ability to exploit low duty cycle by use of a “sleep” mode. When awakened from “sleep” mode by detection of a signal the microprocessor can make a decision regarding the signal and the appropriate course of action—whether to warn other nodes, increase data acquisition, check other spectral signatures, etc. The microprocessor should preferably also be capable of scheduling and controlling RF communications and of enabling/disabling RF and other circuits as the situation demands. If appropriate, the microprocessor may route the spectral density information from theDSP18 and/or the buffered time domain sensor data to theRF transceiver22 for transmission to the network. Themicroprocessor20 can also control uploading or coefficients for theDSP18 and thus may reconfigure the DSP dynamically, in response to conditions, data, received instructions or programming. For example, themicroprocessor20 can upload coefficients from the memory21 (typically on-chip memory integral to the microprocessor) into theDSP18 to narrow or widen the spectral region of focus, move the center frequencies (by modification of the coefficients), or load a new threshold profile for comparison with the signal. This allows the node to cooperate with other nodes in concerted tasks or data acquisition, or to modify its data processing based on the current characteristics of the sensor data.
FIG. 7 shows a sequence which can be used by themicroprocessor20 to allow the node to function in a synchronized TDMA communication scheme. The microprocessor begins by initializing processes (85) including its internal registers, pointers, memory and I/O addressing functions. Next themicroprocessor20 forms a schedule (86) for communications with neighbors. In a simple embodiment, themicroprocessor20 might consult a pre-stored schedule for initial time slot activity scheduling information. For example, the microprocessor on an individual node may compare a pre-stored identity to a pre-programmed master table or schedule to determine what time slots in a TDMA scheme are allocated to that node. In more complex self-organizing embodiments, forming a schedule may require topology learning and communication slot allocation, as discussed below (“E. Network organization”).
FIG. 8 shows a generalized timing diagram of a TDMA scheme which may be used by the invention to schedule node activities. Node activities including communication are scheduled in arepeating time frame95, broken up into shorter time slices such as95a-d. Specific nodes are scheduled to transmit and receive during respective specific time slices. For example, a microprocessor on a given node may be scheduled to transmit data inslice95cand receive data inslice95d. A frame synch slice95ais defined by a previously programmed command which is recognized by the nodes, to allow the nodes to achieve synchronization. Other synchronization slices such as synch slices95eand95fmay also be provided, to aid in maintaining timing synchrony within theframe95.
Referring again to FIG. 7, afterinitialization85 themicroprocessor20 forms a schedule (86), then setstransceiver12 to listen for the frame synch slice95a. Whenframe synch slice95a is received themicroprocessor20 sets an internal timer to and commences the appropriate activity according to its schedule (86). For example, if the particular node is not scheduled to receive or transmit in the upcoming slice, it would load DSP coefficients (88), then acquire sensor data (89), analyze the DSP output (90) (including detecting any alarm conditions output by threshold comparators19); then, during the appropriately scheduled slices the microprocessor enables the transceiver to receive data and commands (91) and to transmit (92) data, including alarm conditions and relayed messages and commands to other nodes. The microprocessor then waits (93) for thenext frame synch95aand repeats the activities88-93 in a loop.
D.) The RF Transceiver:
In a preferred embodiment, anRF transceiver22, under control of themicroprocessor20, provides bidirectional communication between a node and other nodes or users, for communicating data, decisions, programming or routine network protocol maintenance information. The transceiver should preferably have the ability to assume a low power consuming “off” mode when it is not needed in a time slot, so that power can be conserved in a TDMA communication scheme.
As shown in FIG. 9, thetransceiver22 includes atransmitter96 and areceiver97, which share anantenna4 and power supply3 (typically batteries).Transmitter96 andreceiver97 are enabled/disabled by by respective enable signals98 and99 frommicroprocessor20; a universal asynchronous receiver/ transmitter (UART) controller40 (for example, the MAX3243CAI chip available from Maxim) handles data transfer between thereceiver97, thetransmitter96 andmicroprocessor20. The receiver design should preferably provide low noise and high selectivity while maintaining low power requirements. For some protocols, the receiver should be able to operate during some period at high duty cycle to enable each node to capture randomly arriving signals.
Conventional highly integrated transceivers are available which are suitable for use in the invention. For example, commercially available chipsets would include the Rockwell Digital Cordless Telephone (DCT) chipset, based around the R900DCTM-4 or R900DCTM-3 transceiver modules. These highly integrated transceiver integrated circuits (ICs) are suitable for operation in the 902 to 928 MHz. band, and with suitable accompanying chips, commercially available from the same source, are capable of digital spread spectrum (DSS) operation. Other commercially available ICs which are suitable for use in the invention include the RX2010 receiver and HX2000 or AT1000 transmitters all from RF Monolithics, Inc. Whichever RF ICs are used, they should preferably be chosen for small size, low quiescent and peak power consumption, and short turn on/turn off times. It is most preferred that the transceiver electronics be integrated with the sensor, microprocessor, and signal processing electronics.
Although the invention is primarily discussed in the context of radio communicating wireless node, the medium of communication could be any other wireless medium, including infrared, optical, acoustic, microwave, or ultrasonic waves. Various means of modulation are all possible and within the intended scope of the invention.
E. Network Organization:
At the network level, the invention employs various techniques to minimize power consumption by the nodes and to exploit the large numbers of nodes and their density of placement. Along with the low frequency of sensor data and the more or less permanent placement of the nodes, these factors weigh in favor of a network using multi-hop routed communication within a complex topology of overlapping wireless communication neighborhoods.
In an environment of densely placed nodes, low transmission power is advantageous. It is often more power efficient to relay a message via multiple relayed low power transmissions (referred to as “multihops”) rather than one high powered long range transmission. This is a consequence of the variation of radiation intensity with distance from the transmitter, which takes the form of an inverse square or higher power function, depending on terrain. In ideal terrain, assuming a minimum inverse square attenuation, ten short, straight line path transmissions of distance d require only one tenth the power of one long transmission across10d(assuming omnidirectional antennas). With real terrain effects the difference is generally even more pronounced. It is therefore preferred that each transmitter operate at a power level not in excess of that required to reach only a small subset of the other nodes, relying on relayed transmissions to span the network. This also enables channel reuse by nodes out of range of one another, conserving bandwidth. Low transmission power levels also provide low probability of interception and low probability of detection, both desirable in some applications.
A synchronous multi-access protocol such as TDMA is preferred to schedule communications within the network. In this method, multiple nodes are synchronized in a repeating time frame, the parameters of which are stored in memory on or associated with therespective microprocessors20 on each of the multiple nodes. As previously discussed, the time frame is divided into shorter time slices, which can serve as channels. For example, the transceiver on a specific node can be caused to transmit by that node'smicroprocessor20 during a programmed time slot. Other nodes within transmission range of the transmitting node are controlled by theirmicroprocessors20 to receive data via theirrespective transceivers22 during the same time slot. If the received data is earmarked for another destination node (such as a user interface node) the receiving node is controlled by itsmicroprocessor20 to store the message (for example in memory21) and relay the message by re-transmitting the data throughtransceiver22 during another assigned time slot. In this way data is relayed through the network and routed toward its destination, usually a node which is accessible to a user.
TDMA is advantageous in a low powered network, since both transmitters and receivers can be idled in an off or power conserving state during time intervals when not required. However, the programmability of the node microprocessor enables many other methods of organizing access to the communication medium which are also within the intended scope of the invention, including code division multiple access (CDMA) and frequency division multiple access (FDMA) as examples.
In some applications of the invention the locations of the nodes may not be known in advance of deployment, and it is highly desirable to learn the communication topology of the network which results from placement and terrain. Furthermore, in some applications it may be most desirable to operate in a distributed manner, controlled from multiple nodes, rather than from a central location. This protects the network from jamming, interference, and accidental or intentional destruction. The resulting network controls are widely distributed so the network can reconfigure to adapt to changing conditions.
In the invention,microprocessor20 can be programmed to learn the topology and routing needs of a network, either autonomously or with user input. A variety of conventional methods may be programmed, including the “layer net protocol” suggested by A. Bhatnagar, “Layer Net: A New Self-Organizing Network Protocol,”I.E.E.E. Military Communications Conference Record, Vol. 2, pp. 845-49 (1990), or that described by A. Ephremides, “A Design Concept for Reliable Mobile Radio Networks with Frequency Hopping Signaling,”Proceedings of the I.E.E.E., vol. 75, no. 1, pp. 56-73 (1987). If a TDMA access method is used, time slots within a repeating time frame can be allocated by conventional methods such as the “Unifying Slot Assignment Protocol” (USAP) described by C. David Young, “USAP: A Unifying Dynamic Distributed Multichannel TDMA Slot assignment Protocol,”I.E.E.E. Military Communications Conference Record, Vol. 1, pp .235-39 (1996).
The aforementioned methods provide examples of distributed, autonomous methods for organizing the network communications, but in some applications even simple methods such as direct assignment of channels by a user may be useful and appropriate.
While particular embodiments of the invention have been shown and described, numerous variations and alternate embodiments will occur to those skilled in the art. Accordingly, it is intended that the invention be limited only in terms of the appended claims.

Claims (9)

We claim:
1. An electronic communicating and sensing station, comprising:
a sensor which provides an output indicative of a sensed condition,
a digital signal processor, coupled to receive the sensor output and configured to compare characteristics of the sensor output to a stored set of characteristics, and producing an output based upon said comparison,
a programmable microprocessor coupled to said digital signal processor to evaluate its output,
a wireless transmitter that is controlled by said programmable microprocessor, to transmit information about the sensed condition, and
a wireless receiver that is controlled by said programmable microprocessor to receive data and instructions for programming said programmable microprocessor;
wherein said transmitter and receiver operate in a plurality of communication channels that are defined time periods, subdivisions of a longer periodically repeating time frame.
2. The station of claim1, wherein said programmable microprocessor is programmed: (a) to enable said wireless receiver to receive data during a defined time period, (b) to store data that is received during said time period, and (c) to cause said wireless transmitter to transmit the data during a later defined time period.
3. An electronic communicating and sensing station, comprising:
a sensor which provides an output indicative of a sensed condition,
a digital signal processor, coupled to receive the sensor output and configured to compare characteristics of the sensor output to a stored set of characteristics, and producing an output based upon said comparison,
a programmable microprocessor coupled to said digital signal processor to evaluate its output,
a wireless transmitter that is controlled by said programmable microprocessor, to transmit information about the sensed condition,
a wireless receiver that is controlled by said programmable microprocessor to receive data and instructions for programming said programmable microprocessor;
a data buffer for storing data from said sensor,
a spectral analyzer which operates on the data in said data buffer, to compute a power spectral density in at least one spectral band, and one or more comparators, each comparing the power spectral density in a respective spectral band computed by said spectral analyzer with a respective stored power spectral density and producing an output signal when said power spectral density exceeds said stored power spectral density, the output signals from said comparators together forming the output of said digital signal processor.
4. The station of claim3, wherein said sensor, said digital signal processor, said microprocessor, said wireless transmitter and said wireless receiver are integrated on a common substrate.
5. The station of claim3, wherein said spectrum analyzer comprises at least one digital filter which operates on the contents of said data buffer and computes a filtered data output representing signal components from said sensor in a selected spectral band.
6. The station of claim5, further comprising:
a sum-of-squares accumulator, which operates on the filtered data output of said digital filter, squares the filtered data output from said digital filters and accumulates the squared filtered data output over a time interval to obtain an average power spectral density for application as an input to said comparators.
7. The station of claim3, wherein said microprocessor operates at a low power when the outputs from said comparators are below a predetermined threshold, and operates at a higher power level when the output from at least one of said comparators exceeds said threshold.
8. An electronic communicating and sensing station, comprising:
a digital signal processor, adapted to receive a signal indicative of an environmental condition and configured to compare characteristics of the sensor output to a stored set of characteristics, and producing an output based upon said comparison,
a programmable microprocessor coupled to said digital signal processor to evaluate its output,
a wireless transmitter that is controlled by said programmable microprocessor, to transmit information about the environmental condition, and
a wireless receiver that is controlled by said programmable microprocessor to receive data and instructions for programming said programmable microprocessor;
 wherein said digital signal processor comprises:
a data buffer for storing data from said sensor,
a spectrum analyzer which operates on the data in said data buffer, to compute a power spectral density in at least one spectral band, and
one or more comparators, each comparing the power spectral density in a respective spectral band computed by said spectrum analyzer with a respective stored power spectral density and producing an output signal when said power spectral density exceeds said stored power spectral density, the output signals from said comparators together forming the output of said digital signal processor.
9. A network of electronic communicating and sensing stations, comprising at least two stations, a first station and a second station, each comprising:
a sensor which provides an output indicative of a sensed condition,
a digital signal processor, coupled to receive the sensor output and configured to compare characteristics of the sensor output to a stored set of characteristics, and producing an output based upon said comparison,
a programmable microprocessor coupled to said digital signal processor to evaluate its output,
a wireless transmitter that is controlled by said programmable microprocessor to transmit information about the sensed condition, and
a wireless receiver that is controlled by said programmable microprocessor to receive data and instructions for programming said programmable microprocessor;
wherein said second station is arranged to communicate with said first station by receiving said information by said wireless receiver; and
wherein said digital signal processor comprises:
a data buffer for storing data from said sensor,
a spectrum analyzer which operates on the data in said dati buffer, to compute a power spectral density in at least on( spectral band, and
one or more comparators, each comparing the power spectral density in a respective spectral band computed by said spectrum analyzer with a respective stored power spectral density and producing an output signal when said power spectral density exceeds said stored power spectral density, the outputs from said comparators together forming the output of said digital signal processor.
US09/135,7621998-08-181998-08-18Wireless integrated sensor network using multiple relayed communicationsExpired - LifetimeUS6208247B1 (en)

Priority Applications (1)

Application NumberPriority DateFiling DateTitle
US09/135,762US6208247B1 (en)1998-08-181998-08-18Wireless integrated sensor network using multiple relayed communications

Applications Claiming Priority (1)

Application NumberPriority DateFiling DateTitle
US09/135,762US6208247B1 (en)1998-08-181998-08-18Wireless integrated sensor network using multiple relayed communications

Publications (1)

Publication NumberPublication Date
US6208247B1true US6208247B1 (en)2001-03-27

Family

ID=22469542

Family Applications (1)

Application NumberTitlePriority DateFiling Date
US09/135,762Expired - LifetimeUS6208247B1 (en)1998-08-181998-08-18Wireless integrated sensor network using multiple relayed communications

Country Status (1)

CountryLink
US (1)US6208247B1 (en)

Cited By (368)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
WO2001026329A3 (en)*1999-10-062002-02-07Sensoria CorpMethod for the networking of sensors
US20020024450A1 (en)*1999-12-062002-02-28Townsend Christopher P.Data collection and storage device
US20020094780A1 (en)*2000-08-012002-07-18Payton David W.Method and apparatus for signaling among a plurality of agents
US20020125998A1 (en)*1998-06-222002-09-12Petite Thomas D.System and method for monitoring and controlling remote devices
US6469639B2 (en)*1998-05-152002-10-22System Excelerator, Inc.Method and apparatus for low power, micro-electronic mechanical sensing and processing
US6492927B2 (en)*2000-04-182002-12-10Sony CorporationDigital-signal receiving apparatus
US20030001230A1 (en)*2000-06-302003-01-02Lowrey Tyler A.Three dimensional programmable device and method for fabricating the same
US6505086B1 (en)2001-08-132003-01-07William A. Dodd, Jr.XML sensor system
US6507771B2 (en)2000-07-102003-01-14Hrl LaboratoriesMethod and apparatus for controlling the movement of a plurality of agents
US20030014521A1 (en)*2001-06-282003-01-16Jeremy ElsonOpen platform architecture for shared resource access management
US20030012168A1 (en)*2001-07-032003-01-16Jeremy ElsonLow-latency multi-hop ad hoc wireless network
US20030063585A1 (en)*2001-08-032003-04-03Honeywell International Inc.Energy aware network management
US6580979B2 (en)2000-07-102003-06-17Hrl Laboratories, LlcMethod and apparatus for terrain reasoning with distributed embedded processing elements
US20030152041A1 (en)*2002-01-102003-08-14Falk HerrmannProtocol for reliable, self-organizing, low-power wireless network for security and building automation systems
US20030151513A1 (en)*2002-01-102003-08-14Falk HerrmannSelf-organizing hierarchical wireless network for surveillance and control
US20030160701A1 (en)*2002-02-252003-08-28Omron CorporationProximate sensor using micro impulse waves for monitoring the status of an object, and monitoring system employing the same
WO2003003754A3 (en)*2001-06-292003-10-23Vivactiss BvbaIntelligent microplates with remote data access
US20030233211A1 (en)*2002-02-152003-12-18Payton David W.Motion prediction within an amorphous sensor array
US20030236866A1 (en)*2002-06-242003-12-25Intel CorporationSelf-surveying wireless network
US20040005889A1 (en)*2002-06-282004-01-08Naoki NishimuraWireless communication apparatus and method
US20040039502A1 (en)*2001-06-292004-02-26Wilson Bary W.Diagnostics/prognostics using wireless links
US6735630B1 (en)*1999-10-062004-05-11Sensoria CorporationMethod for collecting data using compact internetworked wireless integrated network sensors (WINS)
US20040102918A1 (en)*2002-11-272004-05-27Stana James M.Method and apparatus for recording changes associated with acceleration of a structure
US20040105533A1 (en)*1998-08-072004-06-03Input/Output, Inc.Single station wireless seismic data acquisition method and apparatus
US20040125811A1 (en)*2002-12-272004-07-01Raad RaadMethod and wireless sensor platform for establishing pair-wise communication
US20040135698A1 (en)*2002-08-302004-07-15Craig WebbSensor apparatus and method for detecting earthquake generated P-waves and generating a responsive control signal
US20040150521A1 (en)*2003-02-032004-08-05Stilp Louis A.RFID based security system
US20040160324A1 (en)*2003-02-032004-08-19Stilp Louis A.Controller for a security system
US20040160322A1 (en)*2003-02-032004-08-19Stilp Louis A.RFID reader for a security system
US20040160306A1 (en)*2003-02-032004-08-19Stilp Louis A.Device enrollment in a security system
US20040160309A1 (en)*2003-02-032004-08-19Stilp Louis A.Communications control in a security system
US20040160323A1 (en)*2003-02-032004-08-19Stilp Louis A.RFID transponder for a security system
US20040167750A1 (en)*2003-02-242004-08-26Pagnano Marco Aurelio De OliveiraArrangements and methods for monitoring processes and devices using a web service
US20040174264A1 (en)*2003-03-052004-09-09Dmatek Ltd.Monitoring and tracking network
US20040203434A1 (en)*2002-10-232004-10-14Rosemount, Inc.Virtual wireless transmitter
US20040210878A1 (en)*2003-04-152004-10-21Pagnano Marco Aurelio De OliveiraArrangements, storage mediums and methods for transmitting a non-proprietary language Device Description file associated with a field device using a Web Service
US20040212494A1 (en)*2003-02-032004-10-28Stilp Louis A.Cordless telephone system
US20040212497A1 (en)*2003-02-032004-10-28Stilp Louis A.Multi-controller security network
US20040212493A1 (en)*2003-02-032004-10-28Stilp Louis A.RFID reader for a security network
US20040212500A1 (en)*2003-02-032004-10-28Stilp Louis A.RFID based security network
US20040215750A1 (en)*2003-04-282004-10-28Stilp Louis A.Configuration program for a security system
US6813526B1 (en)2001-08-132004-11-02William A. Dodd, Jr.Fleet maintenance method
US20040217881A1 (en)*2003-04-292004-11-04Innovative Technology Licensing, LlcModular wireless integrated network sensor (WINS) node with a dual bus architecture
US6816862B2 (en)2001-01-172004-11-09Tiax LlcSystem for and method of relational database modeling of ad hoc distributed sensor networks
US20040224713A1 (en)*2003-04-162004-11-11Karlheinz SchreyerMethod for radio transmission in an alarm signaling system
US20040230582A1 (en)*2003-05-132004-11-18Pagnano Marco Aurelio De OliveiraArrangement, storage medium and method for providing information which is obtained via a device type manager, and transmitted in an extensible mark-up language format or a hypertext mark-up language format
US20040230899A1 (en)*2003-05-132004-11-18Pagnano Marco Aurelio De OliveiraArrangements, storage mediums and methods for associating an extensible stylesheet language device description file with a non- proprietary language device description file
US20040233873A1 (en)*2001-09-202004-11-25Hwang LeeMultiple access method for sharing pseudo-noise code by time division transmission in wireless telemetry system
US6826607B1 (en)*1999-10-062004-11-30Sensoria CorporationApparatus for internetworked hybrid wireless integrated network sensors (WINS)
US6832251B1 (en)*1999-10-062004-12-14Sensoria CorporationMethod and apparatus for distributed signal processing among internetworked wireless integrated network sensors (WINS)
US20040257913A1 (en)*2003-05-302004-12-23Ray Clifford H.Method and apparatus for land based seismic data acquisition
US20050021724A1 (en)*2003-07-072005-01-27Industrial Technology Research Institute And Hsiang-Tsung KungMethods and systems for operating a logical sensor network
US20050037789A1 (en)*2003-06-052005-02-17Sokwoo RheeProtocol for configuring a wireless network
US6859831B1 (en)*1999-10-062005-02-22Sensoria CorporationMethod and apparatus for internetworked wireless integrated network sensor (WINS) nodes
US20050061056A1 (en)*1999-03-032005-03-24Smiths Detection-Pasadena, Inc.Apparatus, systems and methods for detecting and transmitting sensory data over a computer network
US6873256B2 (en)*2002-06-212005-03-29Dorothy LemelsonIntelligent building alarm
US6889165B2 (en)*2001-07-022005-05-03Battelle Memorial InstituteApplication specific intelligent microsensors
US20050122231A1 (en)*2003-12-082005-06-09The Regents Of The University Of CaliforniaPower efficient wireless system for sensor network
US20050122233A1 (en)*2003-10-312005-06-09Nec CorporationPower saving wireless telemetering system
US20050132080A1 (en)*2000-10-312005-06-16Millennial Net, A Massachusetts CorporationCoordinating protocol for a multi-processor system
US20050143133A1 (en)*2003-12-312005-06-30Raj BridgelallSystem and a node used in the system for wireless communication and sensory monitoring
US20050159905A1 (en)*2004-01-162005-07-21Lpg Central, Inc.System and method for remote asset monitoring
US20050180356A1 (en)*2002-10-012005-08-18Graviton, Inc.Multi-channel wireless broadcast protocol for a self-organizing network
US20050201397A1 (en)*1998-06-222005-09-15Statsignal Ipc, LlcSystems and methods for monitoring conditions
US20050213548A1 (en)*2004-03-242005-09-29Benson Dwayne MAircraft engine sensor network using wireless sensor communication modules
US20050220142A1 (en)*2004-03-312005-10-06Jung Edward K YAggregating mote-associated index data
US20050221761A1 (en)*2004-03-312005-10-06Searete Llc, A Limited Liability Corporation Of The State Of Delaware.Mote networks using directional antenna techniques
US20050220146A1 (en)*2004-03-312005-10-06Jung Edward K YTransmission of aggregated mote-associated index data
US20050227686A1 (en)*2004-03-312005-10-13Jung Edward K YFederating mote-associated index data
US20050227736A1 (en)*2004-03-312005-10-13Jung Edward K YMote-associated index creation
US20050233699A1 (en)*2004-03-312005-10-20Searete Llc, A Limited Liability Corporation Of The State Of DelawareMote networks having directional antennas
WO2005103851A1 (en)2004-04-232005-11-03Endress+Hauser Process Solutions AgRadio module for field appliances used in automation systems
US20050255841A1 (en)*2004-05-122005-11-17Searete LlcTransmission of mote-associated log data
US20050254520A1 (en)*2004-05-122005-11-17Searete Llc, A Limited Liability Corporation Of The State Of DelawareTransmission of aggregated mote-associated log data
US20050256667A1 (en)*2004-05-122005-11-17Searete Llc, A Limited Liability Corporation Of The State Of DelawareFederating mote-associated log data
US20050265388A1 (en)*2004-05-122005-12-01Searete Llc, A Limited Liability Corporation Of The State Of DelawareAggregating mote-associated log data
US20050267960A1 (en)*2004-05-122005-12-01Searete Llc, A Limited Liability Corporation Of The State Of DelawareMote-associated log creation
US20050275547A1 (en)*2004-05-272005-12-15Lawrence KatesMethod and apparatus for detecting water leaks
WO2005122710A2 (en)2004-06-182005-12-29Emwitech Holding AbA system for surveillance and a method for the application thereof
US20050289275A1 (en)*2004-06-252005-12-29Jung Edward KFrequency reuse techniques in mote-appropriate networks
US20050289122A1 (en)*2004-06-252005-12-29Jung Edward KUsing federated mote-associated logs
US20060004888A1 (en)*2004-05-212006-01-05Searete Llc, A Limited Liability Corporation Of The State DelawareUsing mote-associated logs
US20060026118A1 (en)*2004-07-302006-02-02Jung Edward KAggregation and retrieval of network sensor data
US20060026132A1 (en)*2004-07-272006-02-02Jung Edward K YUsing mote-associated indexes
US20060026164A1 (en)*2004-03-312006-02-02Jung Edward KData storage for distributed sensor networks
US20060046711A1 (en)*2004-07-302006-03-02Jung Edward KDiscovery of occurrence-data
US20060045055A1 (en)*2004-08-302006-03-02Padmaja RamadasMethod and apparatus for deploying an ad-hoc network
US20060049271A1 (en)*2004-09-072006-03-09Hitt Dale KWireless sprinkler control
EP1461629A4 (en)*2001-11-272006-03-22Xsilogy IncRemote battery monitoring systems and sensors
US20060064402A1 (en)*2004-07-272006-03-23Jung Edward K YUsing federated mote-associated indexes
US20060062252A1 (en)*2004-06-302006-03-23Jung Edward KMote appropriate network power reduction techniques
US7020701B1 (en)*1999-10-062006-03-28Sensoria CorporationMethod for collecting and processing data using internetworked wireless integrated network sensors (WINS)
US7020501B1 (en)*2001-11-302006-03-28Bbnt Solutions LlcEnergy efficient forwarding in ad-hoc wireless networks
US20060071757A1 (en)*2004-09-242006-04-06Burghard Brion JCommunication methods, systems, apparatus, and devices involving RF tag registration
US20060079285A1 (en)*2004-03-312006-04-13Jung Edward K YTransmission of mote-associated index data
US20060135145A1 (en)*2004-12-172006-06-22Bbnt Solutions LlcMethods and apparatus for reduced energy communication in an ad hoc network
US20060132303A1 (en)*2003-02-032006-06-22Stilp Louis AComponent diversity in a RFID security network
US20060132301A1 (en)*2003-02-032006-06-22Stilp Louis AFixed part-portable part communications network for a security network
US20060132302A1 (en)*2003-02-032006-06-22Stilp Louis APower management of transponders and sensors in an RFID security network
WO2006067271A1 (en)2004-12-222006-06-29Mikko KohvakkaEnergy efficient wireless sensor network, node devices for the same and a method for arranging communications in a wireless sensor network
US20060145842A1 (en)*2003-02-032006-07-06Stilp Louis AMulti-level meshed security network
US20060200542A1 (en)*2005-02-282006-09-07Tendril Networks, Inc.Apparatus and method for network-aware power management
US20060212226A1 (en)*2003-11-212006-09-21Ray Clifford HMethod and system for the transmission of seismic data
US20060220843A1 (en)*2005-03-302006-10-05Alan BroadInteractive surveillance network and method
US7119676B1 (en)2003-10-092006-10-10Innovative Wireless Technologies, Inc.Method and apparatus for multi-waveform wireless sensor network
US20060229083A1 (en)*2004-12-172006-10-12Bbn Technologies Corp.Methods and apparatus for reduced energy communication in an ad hoc network
US20060229086A1 (en)*2005-03-302006-10-12Broad Alan SSurveillance system and method
US20060247505A1 (en)*2005-04-282006-11-02Siddiqui Waqaas AWireless sensor system
US20060267756A1 (en)*2004-05-272006-11-30Lawrence KatesSystem and method for high-sensitivity sensor
US20060273896A1 (en)*2005-06-062006-12-07Lawrence KatesSystem and method for variable threshold sensor
US20060285579A1 (en)*2005-06-012006-12-21Sokwoo RheeCommunicating over a wireless network
US20060291327A1 (en)*2002-11-222006-12-28Simon BarakatSeismic acquisition system
US7158511B2 (en)2000-09-272007-01-02Hrl Laboratories, LlcMethod and apparatus for providing directed communications through a networked array of nodes
US20070042706A1 (en)*2005-04-082007-02-22Vanderbilt UniversitySystem and methods of radio interference based localization in sensor networks
US20070046498A1 (en)*2005-08-262007-03-01K Y Jung EdwardMote presentation affecting
US20070046497A1 (en)*2005-08-262007-03-01Jung Edward KStimulating a mote network for cues to mote location and layout
US20070063833A1 (en)*2005-09-202007-03-22Lawrence KatesProgrammed wireless sensor system
US20070063836A1 (en)*2005-09-202007-03-22Hayden Craig AMethod and apparatus for adding wireless devices to a security system
US20070070983A1 (en)*2005-09-282007-03-29Bbn Technologies Corp.Methods and apparatus for improved efficiency communication
US20070090946A1 (en)*2004-05-272007-04-26Lawrence KatesWireless sensor unit
US20070132846A1 (en)*2005-03-302007-06-14Alan BroadAdaptive network and method
US20070139208A1 (en)*2005-09-232007-06-21Lawrence KatesMethod and apparatus for detecting moisture in building materials
US20070139183A1 (en)*2005-12-192007-06-21Lawrence KatesPortable monitoring unit
US20070168412A1 (en)*2005-03-222007-07-19Aware Technologies, Inc.Distributed multi-nodal voice/data communication
US20070179754A1 (en)*2006-01-302007-08-02Sper Scientific Ltd.Wireless meter for real time measurements and method therefor
US20070178842A1 (en)*2006-01-312007-08-02Mutsuya IiMethod and system for synchronizing geographically distributed RF sensors using a pair of RF triggering devices
US20070192870A1 (en)*2002-05-202007-08-16Airdefense, Inc., A Georgia CorporationMethod and system for actively defending a wireless LAN against attacks
US20070190368A1 (en)*2006-02-132007-08-16Searete Llc, A Limited Liability Corporation Of The State Of DelawareCamouflage positional elements
WO2005101710A3 (en)*2004-03-312007-09-13Searete LlcTransmission of aggregated mote-associated index data
US7274907B1 (en)2003-12-192007-09-25Unites States Of America As Represented By The Administrator Of The National Aeronautics And Space AdministrationWireless instrumentation system and power management scheme therefore
US20070236489A1 (en)*2006-01-302007-10-11Jung Edward KPositional display elements
US20070249503A1 (en)*2006-04-242007-10-25Honeywell International Inc.Wireless sensor network with superconducting nodes
US20070247303A1 (en)*2006-04-252007-10-25Hrl Laboratories, LlcEvent localization within a distributed sensor array
US20070286020A1 (en)*2006-06-092007-12-13Input/Output, Inc.Heads-up Navigation for Seismic Data Acquisition
US20070286022A1 (en)*2006-06-092007-12-13Input/Output, Inc.Operating State Management for Seismic Data Acquisition
US20070286023A1 (en)*2006-06-102007-12-13Input/Output, Inc.Digital Elevation Model for Use with Seismic Data Acquisition Systems
US20070291689A1 (en)*2005-03-302007-12-20Crossbow Technology, Inc.Delivery of Data Packets via Aggregated Spatial Distribution Overlay on a Mesh Network
US20080001734A1 (en)*2003-02-032008-01-03Stilp Louis APortable telephone in a security network
US20080021658A1 (en)*2006-06-102008-01-24Input/Output, Inc.Apparatus and Method for Integrating Survey Parameters Into a Header
US20080031213A1 (en)*2002-01-022008-02-07Kaiser William JAutonomous tracking wireless imaging sensor network
US20080047329A1 (en)*2002-06-112008-02-28Intelligent Technologies International, Inc.Remote Monitoring of Fluid Reservoirs
US20080064338A1 (en)*2004-03-312008-03-13Searete Llc, A Limited Liability Corporation Of The State Of DelawareMote networks using directional antenna techniques
US20080080310A1 (en)*2006-09-292008-04-03Ion Geophysical CorporationSeismic Data Acquisition Systems and Methods for Managing Messages Generated by Field Units
US20080080307A1 (en)*2006-09-292008-04-03Ion Geophysical CorporationApparatus and Methods for Transmitting Unsolicited Messages During Seismic Data Acquisition
US20080080312A1 (en)*2006-09-292008-04-03Ion Geophysical CorporationSeismic Data Acquisition Using Time-Division Multiplexing
US20080080311A1 (en)*2006-09-292008-04-03Ion Geophysical CorporationSeismic Data Acquisition Systems and Method Utilizing a Wireline Repeater Unit
US20080114548A1 (en)*2006-09-292008-05-15Ion Geophysical CorporationIn-Field Control Module for Managing Wireless Seismic Data Acquisition Systems and Related Methods
WO2008056023A1 (en)2006-11-072008-05-15Mikko KohvakkaEnergy-efficient neighbor discovery for mobile wireless sensor networks
US20080150360A1 (en)*2006-12-202008-06-26Nortel Networks LimitedSystem and Method for Providing Power Management in a Sensor Network
US20080171519A1 (en)*2004-03-312008-07-17Tegreene Clarence TMote networks having directional antennas
US20080181130A1 (en)*2007-01-292008-07-31Honeywell International Inc.Receiver-based link-layer protocol
US20080187006A1 (en)*2007-02-012008-08-07Ion Geophysical CorporationApparatus and Method for Reducing Noise in Seismic Data
US20080186898A1 (en)*2005-01-252008-08-07Sipco, LlcWireless Network Protocol System And Methods
US7412876B2 (en)2004-09-232008-08-19Lawrence KatesSystem and method for utility metering and leak detection
US7421257B1 (en)*2001-11-302008-09-02Stragent, LlcReceiver scheduling in ad hoc wireless networks
US7433348B1 (en)*2004-10-222008-10-07Cypress Semiconductor Corp.Time division multiplexing protocol for wireless networks
US20080274701A1 (en)*2002-11-212008-11-06Arati ManjeshwarMethod and system to reconfigure a network to improve network lifetime using most reliable communication links
US20090007706A1 (en)*2002-10-282009-01-08Hitt Dale KWireless Sensor Probe
US7484008B1 (en)1999-10-062009-01-27Borgia/Cummins, LlcApparatus for vehicle internetworks
US20090092069A1 (en)*2001-11-282009-04-09Millennial Net, Inc.Network protocol
WO2009057833A1 (en)*2007-10-302009-05-07Ajou University Industry Cooperation FoundationMethod of routing path in wireless sensor networks based on clusters
US20090129316A1 (en)*2007-08-202009-05-21Bbn Technologies Corp.Systems and methods for adaptive routing in mobile ad-hoc networks and disruption tolerant networks
US7542437B1 (en)2003-10-022009-06-02Bbn Technologies Corp.Systems and methods for conserving energy in a communications network
US20090154481A1 (en)*2007-12-122009-06-18Synapsense CorporationApparatus and method for adaptive data packet scheduling in mesh networks
US20090154343A1 (en)*2007-12-122009-06-18Synapsanse CorporationApparatus and method for adapting to failures in gateway devices in mesh networks
US7551892B1 (en)2004-02-262009-06-23Bbn Technologies CorpLow-power ad hoc network entry
US20090168796A1 (en)*2007-12-282009-07-02Synapsense CorporationApparatus and method for adaptive channel hopping in mesh networks
US20090225629A1 (en)*2003-11-212009-09-10Ray Clifford HMethod and system for transmission of seismic data
US20090271047A1 (en)*2008-04-282009-10-29Masataka WakamatsuPower transmitting apparatus, power receiving apparatus, power transmission method, program, and power transmission system
US7612324B1 (en)2000-09-272009-11-03Hrl Laboratories, LlcDistributed display composed of active fiducials
US20090282156A1 (en)*2004-03-312009-11-12Jung Edward K YOccurrence data detection and storage for mote networks
US20090290453A1 (en)*2008-05-222009-11-26Ray Clifford HLand based unit for seismic data acquisition
US20090315725A1 (en)*2006-10-242009-12-24Hollander Milton BUniversal wireless transceiver
US20090322567A1 (en)*2006-06-132009-12-31The Mitre CorporationFlight restriction zone detection and avoidance
US20100013933A1 (en)*2005-03-302010-01-21Broad Alan SAdaptive surveillance network and method
US20100026479A1 (en)*2007-05-242010-02-04Bao TranWireless occupancy and day-light sensing
US20100031324A1 (en)*2008-03-072010-02-04Strich Ronald FApparatus and method for dynamic licensing access to wireless network information
US20100039933A1 (en)*2008-08-122010-02-18General AtomicsMethod and system for network setup and maintenance and medium access control for a wireless sensor network
US20100045457A1 (en)*2007-06-152010-02-25Krill Jerry ASystem and Methods for Monitoring Security Zones
US20100070102A1 (en)*2008-09-082010-03-18Tendril Networks, Inc.Collaborative energy benchmarking systems and methods
US20100085903A1 (en)*2008-10-032010-04-08Synapsense CorporationApparatus and method for managing packet routing through internally-powered network devices in wireless sensor networks
US7708493B2 (en)2005-08-262010-05-04Searete, LlcModifiable display marker
US7715928B1 (en)*2004-05-172010-05-11University Of Southern CaliforniaEfficient communications and data compression algorithms in sensor networks using discrete wavelet transform
US20100177708A1 (en)*2009-01-142010-07-15Synapsense CorporationApparatus and method for establishing data communication in a time-synchronized mesh wireless network during time synchronization failures
US20100207776A1 (en)*2007-09-212010-08-19Shinji TakunoCommunication device
US20100222895A1 (en)*2007-10-092010-09-02Christian SeilerEnergy-saving operation of a hard-wired communication interface on a field device
US20100245243A1 (en)*2006-01-302010-09-30Searete Llc,A Limited Liability Corporation Of The State Of DelawarePositional display elements
US20100278086A1 (en)*2009-01-152010-11-04Kishore PochirajuMethod and apparatus for adaptive transmission of sensor data with latency controls
US20100284446A1 (en)*2009-05-062010-11-11Fenghao MuMethod and Apparatus for MIMO Repeater Chains in a Wireless Communication Network
US20110022242A1 (en)*2009-06-082011-01-27GroundedPower, Inc.Methods and systems for managing energy usage in buildings
WO2011025563A1 (en)*2009-08-262011-03-03Raytheon CompanyNetwork of traffic behavior-monitoring unattended ground sensors (netbugs)
WO2011033466A1 (en)2009-09-172011-03-24Defendec IncA monitoring method, a monitoring system and a sensor station
US20110069302A1 (en)*2009-09-182011-03-24Qinetiq LimitedWide Area Seismic Detection
US7924728B2 (en)2006-08-252011-04-12Raytheon Bbn Technologies CorpSystems and methods for energy-conscious communication in wireless ad-hoc networks
US7941188B2 (en)2004-03-312011-05-10The Invention Science Fund I, LlcOccurrence data detection and storage for generalized sensor networks
CN101360051B (en)*2008-07-112011-07-20西安电子科技大学Energy efficient wireless sensor network routing method
US8000314B2 (en)1996-12-062011-08-16Ipco, LlcWireless network system and method for providing same
CN102157047A (en)*2011-04-212011-08-17青海省太阳能电力有限责任公司Detecting and alarming system for electric power equipment
US8005108B1 (en)2007-10-312011-08-23Memsic Transducer Systems Co., Ltd.Fast deployment of modules in adaptive network
US8018335B2 (en)2005-08-262011-09-13The Invention Science Fund I, LlcMote device locating using impulse-mote-position-indication
US8031068B1 (en)*2005-12-132011-10-04Textron Systems CorporationSystem and method for detecting emplacement of improvised explosive devices
US8031650B2 (en)2004-03-032011-10-04Sipco, LlcSystem and method for monitoring remote devices with a dual-mode wireless communication protocol
US8075226B2 (en)2005-01-172011-12-13Fairfield Industries IncorporatedMethod and apparatus for deployment of ocean bottom seismometers
US8149102B1 (en)2008-03-272012-04-03Memsic Transducer Systems Co., Ltd.Reconfigurable interface operable with multiple types of sensors and actuators
US8160838B2 (en)2009-04-302012-04-17Synapsense CorporationApparatus and method for visualizing environmental conditions in a data center using wireless sensor networks
US8171136B2 (en)2001-10-302012-05-01Sipco, LlcSystem and method for transmitting pollution information over an integrated wireless network
US20120139750A1 (en)*2007-05-302012-06-07Hitachi, Ltd.Sensor node
US20120154126A1 (en)*2010-12-162012-06-21Alan Wade CohnBidirectional security sensor communication for a premises security system
US20120166155A1 (en)*2010-12-222012-06-28National Tsing Hua UniversityMethod for Selecting Sensor Nodes
US8264226B1 (en)2006-07-062012-09-11Seektech, Inc.System and method for locating buried pipes and cables with a man portable locator and a transmitter in a mesh network
US8281392B2 (en)2006-08-112012-10-02Airdefense, Inc.Methods and systems for wired equivalent privacy and Wi-Fi protected access protection
US8369967B2 (en)1999-02-012013-02-05Hoffberg Steven MAlarm system controller and a method for controlling an alarm system
US8410931B2 (en)1998-06-222013-04-02Sipco, LlcMobile inventory unit monitoring systems and methods
US8446884B2 (en)2004-03-032013-05-21Sipco, LlcDual-mode communication devices, methods and systems
US8473898B2 (en)2008-07-082013-06-25Synapsense CorporationApparatus and method for building integrated distributed applications for use with a mesh network
US8478319B2 (en)2010-05-122013-07-02Information System Technologies, Inc.Feature extraction and data compression system and method for distributed sensor networks
US8489063B2 (en)2001-10-242013-07-16Sipco, LlcSystems and methods for providing emergency messages to a mobile device
US8521428B1 (en)2009-10-152013-08-27Moog Inc.Heading determination using sensors mounted on rotatable assembly
US8538584B2 (en)2008-12-302013-09-17Synapsense CorporationApparatus and method for controlling environmental conditions in a data center using wireless mesh networks
US8600560B2 (en)2008-12-302013-12-03Synapsense CorporationApparatus and method for controlling computer room air conditioning units (CRACs) in data centers
US8666357B2 (en)2001-10-242014-03-04Sipco, LlcSystem and method for transmitting an emergency message over an integrated wireless network
US8779921B1 (en)2010-05-142014-07-15Solio Security, Inc.Adaptive security network, sensor node and method for detecting anomalous events in a security network
US8787246B2 (en)2009-02-032014-07-22Ipco, LlcSystems and methods for facilitating wireless network communication, satellite-based wireless network systems, and aircraft-based wireless network systems, and related methods
US8811377B1 (en)2010-08-302014-08-19Synapsense CorporationApparatus and method for instrumenting devices to measure power usage using a multi-tier wireless network
US8855011B2 (en)2010-07-122014-10-07University Of Southern CaliforniaDistributed transforms for efficient data gathering in sensor networks
US8879362B2 (en)2003-05-302014-11-04Fairfield Industries, Inc.Ocean bottom seismometer package
US8885548B2 (en)2007-12-282014-11-11Synapsense CorporationApparatus and method for admitting new devices in a self-healing, self-organizing mesh network
US8892495B2 (en)1991-12-232014-11-18Blanding Hovenweep, LlcAdaptive pattern recognition based controller apparatus and method and human-interface therefore
US8924588B2 (en)1999-03-182014-12-30Sipco, LlcSystems and methods for controlling communication between a host computer and communication devices
US8964708B2 (en)1998-06-222015-02-24Sipco LlcSystems and methods for monitoring and controlling remote devices
US8981946B2 (en)2011-10-242015-03-17The Toro CompanySoil moisture sensor
US9007050B2 (en)2010-09-172015-04-14The Toro CompanySoil moisture sensor with improved enclosure
US9077183B2 (en)2011-09-062015-07-07Portland State UniversityDistributed low-power wireless monitoring
US9082286B2 (en)2011-02-262015-07-14Seismic Warning Systems, Inc.Customizable policy engine
RU2568142C1 (en)*2014-07-022015-11-10Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "Пензенский государственный университет" (ФГБОУ ВПО ПГУ)Method of detecting moving ground objects from seismic signal
CN105222829A (en)*2015-10-152016-01-06合肥谢尔网络科技有限公司A kind of agriculture Internet of Things environment information acquisition device
US9287727B1 (en)2013-03-152016-03-15Icontrol Networks, Inc.Temporal voltage adaptive lithium battery charger
US20160084803A1 (en)*2014-09-182016-03-24Kabushiki Kaisha ToshibaDetection system and detection method
US9306809B2 (en)2007-06-122016-04-05Icontrol Networks, Inc.Security system with networked touchscreen
US9310815B2 (en)2013-02-122016-04-12Tendril Networks, Inc.Setpoint adjustment-based duty cycling
US9318011B2 (en)2012-03-202016-04-19Tyco Fire & Security GmbhRetail item management using wireless sensor networks
CN105575092A (en)*2016-01-192016-05-11王迅Networking method of wireless sensor network
US9349276B2 (en)2010-09-282016-05-24Icontrol Networks, Inc.Automated reporting of account and sensor information
US20160150056A1 (en)*2014-11-212016-05-26Atmel CorporationMulti-protocol frame filter
US9372272B2 (en)2010-12-172016-06-21Seismic Warning Systems, Inc.Earthquake warning system
US20160191855A1 (en)*2014-12-302016-06-30Invent.ly LLCSensor Deployment With Target Regions
US20160197920A1 (en)*2012-11-292016-07-07Jeffry David AronsonScalable full spectrum cyber determining machine
US9412248B1 (en)2007-02-282016-08-09Icontrol Networks, Inc.Security, monitoring and automation controller access and use of legacy security control panel information
US9423779B2 (en)2013-02-062016-08-23Tendril Networks, Inc.Dynamically adaptive personalized smart energy profiles
US9450776B2 (en)2005-03-162016-09-20Icontrol Networks, Inc.Forming a security network including integrated security system components
US20160274759A1 (en)2008-08-252016-09-22Paul J. DawesSecurity system with networked touchscreen and gateway
US9501916B2 (en)2012-03-202016-11-22Tyco Fire & Security GmbhInventory management system using event filters for wireless sensor network data
US9510065B2 (en)2007-04-232016-11-29Icontrol Networks, Inc.Method and system for automatically providing alternate network access for telecommunications
US9531593B2 (en)2007-06-122016-12-27Icontrol Networks, Inc.Takeover processes in security network integrated with premise security system
US9578511B2 (en)*2014-06-302017-02-21Libre Wireless Technologies, Inc.Systems and techniques for wireless device configuration
US9576472B2 (en)2013-02-062017-02-21Tendril Networks, Inc.Real-time monitoring and dissemination of energy consumption and production data
US9609003B1 (en)2007-06-122017-03-28Icontrol Networks, Inc.Generating risk profile using data of home monitoring and security system
US9621408B2 (en)2006-06-122017-04-11Icontrol Networks, Inc.Gateway registry methods and systems
US9628440B2 (en)2008-11-122017-04-18Icontrol Networks, Inc.Takeover processes in security network integrated with premise security system
US9722813B2 (en)2008-09-082017-08-01Tendril Networks, Inc.Consumer directed energy management systems and methods
US9729342B2 (en)2010-12-202017-08-08Icontrol Networks, Inc.Defining and implementing sensor triggered response rules
US20170270463A1 (en)*2016-03-162017-09-21Triax Technologies, Inc.System and interfaces for managing workplace events
US9867143B1 (en)2013-03-152018-01-09Icontrol Networks, Inc.Adaptive Power Modulation
US9928726B2 (en)2005-02-082018-03-27Ftc Sensors, LlcSensor and transmission control circuit in adaptive interface package
US9928975B1 (en)2013-03-142018-03-27Icontrol Networks, Inc.Three-way switch
US10051078B2 (en)2007-06-122018-08-14Icontrol Networks, Inc.WiFi-to-serial encapsulation in systems
US10062245B2 (en)2005-03-162018-08-28Icontrol Networks, Inc.Cross-client sensor user interface in an integrated security network
US10062273B2 (en)2010-09-282018-08-28Icontrol Networks, Inc.Integrated security system with parallel processing architecture
US10079839B1 (en)2007-06-122018-09-18Icontrol Networks, Inc.Activation of gateway device
US10078958B2 (en)2010-12-172018-09-18Icontrol Networks, Inc.Method and system for logging security event data
US10091014B2 (en)2005-03-162018-10-02Icontrol Networks, Inc.Integrated security network with security alarm signaling system
US10118696B1 (en)2016-03-312018-11-06Steven M. HoffbergSteerable rotating projectile
US10127801B2 (en)2005-03-162018-11-13Icontrol Networks, Inc.Integrated security system with parallel processing architecture
US10133684B2 (en)*2015-09-112018-11-20Robert Bosch GmbhIntegrated circuit having ADC, DSP and computing units
US10142392B2 (en)2007-01-242018-11-27Icontrol Networks, Inc.Methods and systems for improved system performance
US10156959B2 (en)2005-03-162018-12-18Icontrol Networks, Inc.Cross-client sensor user interface in an integrated security network
US10156831B2 (en)2004-03-162018-12-18Icontrol Networks, Inc.Automation system with mobile interface
US10200504B2 (en)2007-06-122019-02-05Icontrol Networks, Inc.Communication protocols over internet protocol (IP) networks
US10216247B1 (en)2005-05-302019-02-26Invent.Ly, LlcSelf-powered devices and methods
US10237237B2 (en)2007-06-122019-03-19Icontrol Networks, Inc.Communication protocols in integrated systems
US20190141040A1 (en)*2012-11-292019-05-09Jeffry David AronsonScalable universal full spectrum cyber cyber determining process
US10313303B2 (en)2007-06-122019-06-04Icontrol Networks, Inc.Forming a security network including integrated security system components and network devices
US10338193B2 (en)*2016-10-072019-07-02Marko BekoApparatus and method for RSS/AoA target 3-D localization in wireless networks
US10339791B2 (en)2007-06-122019-07-02Icontrol Networks, Inc.Security network integrated with premise security system
US10348575B2 (en)2013-06-272019-07-09Icontrol Networks, Inc.Control system user interface
US10361802B1 (en)1999-02-012019-07-23Blanding Hovenweep, LlcAdaptive pattern recognition based control system and method
US10365810B2 (en)2007-06-122019-07-30Icontrol Networks, Inc.Control system user interface
US10379873B2 (en)2014-02-282019-08-13Tyco Fire & Security GmbhDistributed processing system
US10382452B1 (en)2007-06-122019-08-13Icontrol Networks, Inc.Communication protocols in integrated systems
US10380871B2 (en)2005-03-162019-08-13Icontrol Networks, Inc.Control system user interface
US10389736B2 (en)2007-06-122019-08-20Icontrol Networks, Inc.Communication protocols in integrated systems
US10423309B2 (en)2007-06-122019-09-24Icontrol Networks, Inc.Device integration framework
US10425877B2 (en)2005-07-012019-09-24Google LlcMaintaining information facilitating deterministic network routing
US10498830B2 (en)2007-06-122019-12-03Icontrol Networks, Inc.Wi-Fi-to-serial encapsulation in systems
US10523689B2 (en)2007-06-122019-12-31Icontrol Networks, Inc.Communication protocols over internet protocol (IP) networks
US10522026B2 (en)2008-08-112019-12-31Icontrol Networks, Inc.Automation system user interface with three-dimensional display
US10530839B2 (en)2008-08-112020-01-07Icontrol Networks, Inc.Integrated cloud system with lightweight gateway for premises automation
US10559193B2 (en)2002-02-012020-02-11Comcast Cable Communications, LlcPremises management systems
US10616075B2 (en)2007-06-122020-04-07Icontrol Networks, Inc.Communication protocols in integrated systems
US10645347B2 (en)2013-08-092020-05-05Icn Acquisition, LlcSystem, method and apparatus for remote monitoring
US10665079B2 (en)*2015-12-152020-05-26Tracfone Wireless, Inc.Device, system, and process for automatic fall detection analysis
US10666523B2 (en)2007-06-122020-05-26Icontrol Networks, Inc.Communication protocols in integrated systems
US10667220B2 (en)2016-06-072020-05-26Carrier CorporationSystem and method for adjusting power in a wireless sensor
US10664792B2 (en)2008-05-162020-05-26Google LlcMaintaining information facilitating deterministic network routing
US10678279B2 (en)2012-08-012020-06-09Tendril Oe, LlcOptimization of energy use through model-based simulations
US10721087B2 (en)2005-03-162020-07-21Icontrol Networks, Inc.Method for networked touchscreen with integrated interfaces
US10747216B2 (en)2007-02-282020-08-18Icontrol Networks, Inc.Method and system for communicating with and controlling an alarm system from a remote server
US10769562B2 (en)2016-03-162020-09-08Triax Technologies, Inc.Sensor based system and method for authorizing operation of worksite equipment using a locally stored access control list
US10785319B2 (en)2006-06-122020-09-22Icontrol Networks, Inc.IP device discovery systems and methods
US10854059B2 (en)2014-02-282020-12-01Tyco Fire & Security GmbhWireless sensor network
US10862699B2 (en)2015-07-242020-12-08Hewlett-Packard Development Company, L.P.Sensor communications by vibrations
US10866568B2 (en)2016-04-012020-12-15Tendril Oe, LlcOrchestrated energy
US10878323B2 (en)2014-02-282020-12-29Tyco Fire & Security GmbhRules engine combined with message routing
FR3099589A1 (en)*2019-08-012021-02-05A3Ip autonomous intelligent sensor for measuring physical data of an environment comprising at least one geophone
US10979389B2 (en)2004-03-162021-04-13Icontrol Networks, Inc.Premises management configuration and control
US10999254B2 (en)2005-03-162021-05-04Icontrol Networks, Inc.System for data routing in networks
US11089122B2 (en)2007-06-122021-08-10Icontrol Networks, Inc.Controlling data routing among networks
US11113950B2 (en)2005-03-162021-09-07Icontrol Networks, Inc.Gateway integrated with premises security system
US11146637B2 (en)2014-03-032021-10-12Icontrol Networks, Inc.Media content management
US11149975B2 (en)2019-07-242021-10-19Uplight, Inc.Adaptive thermal comfort learning for optimized HVAC control
US11170616B2 (en)2016-03-162021-11-09Triax Technologies, Inc.System and interfaces for managing workplace events
US11182060B2 (en)2004-03-162021-11-23Icontrol Networks, Inc.Networked touchscreen with integrated interfaces
US11201755B2 (en)2004-03-162021-12-14Icontrol Networks, Inc.Premises system management using status signal
US11212192B2 (en)2007-06-122021-12-28Icontrol Networks, Inc.Communication protocols in integrated systems
US11218878B2 (en)2007-06-122022-01-04Icontrol Networks, Inc.Communication protocols in integrated systems
US11237714B2 (en)2007-06-122022-02-01Control Networks, Inc.Control system user interface
US11244545B2 (en)2004-03-162022-02-08Icontrol Networks, Inc.Cross-client sensor user interface in an integrated security network
US11258625B2 (en)2008-08-112022-02-22Icontrol Networks, Inc.Mobile premises automation platform
US11277465B2 (en)2004-03-162022-03-15Icontrol Networks, Inc.Generating risk profile using data of home monitoring and security system
US11310199B2 (en)2004-03-162022-04-19Icontrol Networks, Inc.Premises management configuration and control
US11316958B2 (en)2008-08-112022-04-26Icontrol Networks, Inc.Virtual device systems and methods
US11316753B2 (en)2007-06-122022-04-26Icontrol Networks, Inc.Communication protocols in integrated systems
US11343380B2 (en)2004-03-162022-05-24Icontrol Networks, Inc.Premises system automation
US11368327B2 (en)2008-08-112022-06-21Icontrol Networks, Inc.Integrated cloud system for premises automation
US11405463B2 (en)2014-03-032022-08-02Icontrol Networks, Inc.Media content management
US11423756B2 (en)2007-06-122022-08-23Icontrol Networks, Inc.Communication protocols in integrated systems
US11424980B2 (en)2005-03-162022-08-23Icontrol Networks, Inc.Forming a security network including integrated security system components
US11451409B2 (en)2005-03-162022-09-20Icontrol Networks, Inc.Security network integrating security system and network devices
US11489812B2 (en)2004-03-162022-11-01Icontrol Networks, Inc.Forming a security network including integrated security system components and network devices
US11496568B2 (en)2005-03-162022-11-08Icontrol Networks, Inc.Security system with networked touchscreen
US11582065B2 (en)2007-06-122023-02-14Icontrol Networks, Inc.Systems and methods for device communication
US11601810B2 (en)2007-06-122023-03-07Icontrol Networks, Inc.Communication protocols in integrated systems
US11615697B2 (en)2005-03-162023-03-28Icontrol Networks, Inc.Premise management systems and methods
US11621730B2 (en)2021-02-092023-04-04International Business Machines CorporationTransmitters with dynamic ranges extending beyond supply rails
US11646907B2 (en)2007-06-122023-05-09Icontrol Networks, Inc.Communication protocols in integrated systems
US11677577B2 (en)2004-03-162023-06-13Icontrol Networks, Inc.Premises system management using status signal
US11700142B2 (en)2005-03-162023-07-11Icontrol Networks, Inc.Security network integrating security system and network devices
US11706279B2 (en)2007-01-242023-07-18Icontrol Networks, Inc.Methods and systems for data communication
US11706045B2 (en)2005-03-162023-07-18Icontrol Networks, Inc.Modular electronic display platform
US11712637B1 (en)2018-03-232023-08-01Steven M. HoffbergSteerable disk or ball
US11729255B2 (en)2008-08-112023-08-15Icontrol Networks, Inc.Integrated cloud system with lightweight gateway for premises automation
US11758026B2 (en)2008-08-112023-09-12Icontrol Networks, Inc.Virtual device systems and methods
US11792036B2 (en)2008-08-112023-10-17Icontrol Networks, Inc.Mobile premises automation platform
US11792330B2 (en)2005-03-162023-10-17Icontrol Networks, Inc.Communication and automation in a premises management system
US11811845B2 (en)2004-03-162023-11-07Icontrol Networks, Inc.Communication protocols over internet protocol (IP) networks
US11810032B2 (en)2016-03-162023-11-07Triax Technologies, Inc.Systems and methods for low-energy wireless applications using networked wearable sensors
US11816323B2 (en)2008-06-252023-11-14Icontrol Networks, Inc.Automation system user interface
US11831462B2 (en)2007-08-242023-11-28Icontrol Networks, Inc.Controlling data routing in premises management systems
US11889239B2 (en)2014-06-032024-01-30Applied Minds, LlcColor night vision cameras, systems, and methods thereof
US11916870B2 (en)2004-03-162024-02-27Icontrol Networks, Inc.Gateway registry methods and systems
US11916928B2 (en)2008-01-242024-02-27Icontrol Networks, Inc.Communication protocols over internet protocol (IP) networks
US12003387B2 (en)2012-06-272024-06-04Comcast Cable Communications, LlcControl system user interface
US12063221B2 (en)2006-06-122024-08-13Icontrol Networks, Inc.Activation of gateway device
US12063220B2 (en)2004-03-162024-08-13Icontrol Networks, Inc.Communication protocols in integrated systems
US12184443B2 (en)2007-06-122024-12-31Icontrol Networks, Inc.Controlling data routing among networks
US12283172B2 (en)2007-06-122025-04-22Icontrol Networks, Inc.Communication protocols in integrated systems
US12395128B1 (en)2025-03-062025-08-19Qdacomm LlcDecomposition of signals into a sum of truncated fourier series
US12401997B1 (en)2025-03-062025-08-26Qdacomm LlcPhysical layer security

Citations (12)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4649524A (en)1983-07-051987-03-10Potash Corporation Of Saskatchewan Mining LimitedIntegrated acoustic network
US4812820A (en)*1985-07-231989-03-14Chatwin Ian MalcolmElectronic surveillance system and transceiver unit therefor
US4855713A (en)1988-10-071989-08-08Interactive Technologies, Inc.Learn mode transmitter
US4951029A (en)*1988-02-161990-08-21Interactive Technologies, Inc.Micro-programmable security system
US5241542A (en)1991-08-231993-08-31International Business Machines CorporationBattery efficient operation of scheduled access protocol
US5247564A (en)*1990-10-241993-09-21Gte Mobile Communications Service Corp.Adaptive vehicle alarm detection and reporting system
US5295154A (en)1991-10-011994-03-15Norand CorporationRadio frequency local area network
US5428636A (en)1993-05-031995-06-27Norand CorporationRadio frequency local area network
US5475687A (en)1987-11-101995-12-12Echelon CorporationNetwork and intelligent cell for providing sensing, bidirectional communications and control
US5553076A (en)1994-05-021996-09-03Tcsi CorporationMethod and apparatus for a wireless local area network
US5659195A (en)1995-06-081997-08-19The Regents Of The University Of CaliforniaCMOS integrated microsensor with a precision measurement circuit
US5854994A (en)1996-08-231998-12-29Csi Technology, Inc.Vibration monitor and transmission system

Patent Citations (12)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US4649524A (en)1983-07-051987-03-10Potash Corporation Of Saskatchewan Mining LimitedIntegrated acoustic network
US4812820A (en)*1985-07-231989-03-14Chatwin Ian MalcolmElectronic surveillance system and transceiver unit therefor
US5475687A (en)1987-11-101995-12-12Echelon CorporationNetwork and intelligent cell for providing sensing, bidirectional communications and control
US4951029A (en)*1988-02-161990-08-21Interactive Technologies, Inc.Micro-programmable security system
US4855713A (en)1988-10-071989-08-08Interactive Technologies, Inc.Learn mode transmitter
US5247564A (en)*1990-10-241993-09-21Gte Mobile Communications Service Corp.Adaptive vehicle alarm detection and reporting system
US5241542A (en)1991-08-231993-08-31International Business Machines CorporationBattery efficient operation of scheduled access protocol
US5295154A (en)1991-10-011994-03-15Norand CorporationRadio frequency local area network
US5428636A (en)1993-05-031995-06-27Norand CorporationRadio frequency local area network
US5553076A (en)1994-05-021996-09-03Tcsi CorporationMethod and apparatus for a wireless local area network
US5659195A (en)1995-06-081997-08-19The Regents Of The University Of CaliforniaCMOS integrated microsensor with a precision measurement circuit
US5854994A (en)1996-08-231998-12-29Csi Technology, Inc.Vibration monitor and transmission system

Non-Patent Citations (10)

* Cited by examiner, † Cited by third party
Title
Bhatnagar et al., "Layer Net: A New Self-Oranizing Network Protocol", IEEE Military Communications Conference Record, vol. 2, Jan. 1990, pp. 845-849.
Bult et al., "Low Power Systems for Wireless Microsensors", Proceedings of the International Symposium on Low Power Electtonics and Design, Monterey, CA, Aug. 12-14. 1996, 5 pages.
Bult et al., "Wireless Integrated Microsensors", Solid State Sensor and Actuator Workshop, Hilton Head Transducers Conference, Jun. 2-6, 1996, 6 pages.
Burstein et al., "Low Power Wireless Communication and Signal Processing Circuits for Distributed Microsensors", Proceedings of the International Circuits and Systems Syposium, ISCAS 97, Jun. 1997, 5 pages.
C. David Young, "A Unifying Dynamic Distributed Multichannel TDMA Slot Assignment Protocol", Rockwell International Working Paper, Oct. 25, 1995, pp. 1-29.
C. David Young, "USAP: A Unifying Dynamic Distributed Multichannel TDMA Slot Assignment Protocol", IEEE Military Communications Conference Record, vol. 1, Jan. 1996, p. 235.
Dong et al., "Low Power Signal Processing Architectures for Network Microsensors", University of California, Los Angeles, ISLPED97, International Symposium on Low Power Electronics and Design, Jan. 1998, p. 1.
Ephremides et al., "A Design Concept for Reliable Mobile Radio Networks with Frequency Hopping Signaling", Proceedings of the IEEE, vol. 75, No. 1, Jan. 1987, pp. 56-73.
Lin et al., "Wireless Integrated Network Sensors (WINS) for Tactical Information Systems", Rockwell Science Center, Thousand Oaks, California, Jan.1998.
Norman Abramson, "The Throughput of Packet Broadcasting Channels", IEEE Transactions on Communications, vol. Com-25, No. 1, Jan. 1977, pp. 117-128.

Cited By (805)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US8892495B2 (en)1991-12-232014-11-18Blanding Hovenweep, LlcAdaptive pattern recognition based controller apparatus and method and human-interface therefore
US8000314B2 (en)1996-12-062011-08-16Ipco, LlcWireless network system and method for providing same
US8982856B2 (en)1996-12-062015-03-17Ipco, LlcSystems and methods for facilitating wireless network communication, satellite-based wireless network systems, and aircraft-based wireless network systems, and related methods
US8625496B2 (en)1996-12-062014-01-07Ipco, LlcWireless network system and method for providing same
US8233471B2 (en)1996-12-062012-07-31Ipco, LlcWireless network system and method for providing same
US6469639B2 (en)*1998-05-152002-10-22System Excelerator, Inc.Method and apparatus for low power, micro-electronic mechanical sensing and processing
US8223010B2 (en)1998-06-222012-07-17Sipco LlcSystems and methods for monitoring vehicle parking
US8212667B2 (en)1998-06-222012-07-03Sipco, LlcAutomotive diagnostic data monitoring systems and methods
US8410931B2 (en)1998-06-222013-04-02Sipco, LlcMobile inventory unit monitoring systems and methods
US9571582B2 (en)1998-06-222017-02-14Sipco, LlcSystems and methods for monitoring and controlling remote devices
US7053767B2 (en)*1998-06-222006-05-30Statsignal Systems, Inc.System and method for monitoring and controlling remote devices
US8964708B2 (en)1998-06-222015-02-24Sipco LlcSystems and methods for monitoring and controlling remote devices
US9129497B2 (en)1998-06-222015-09-08Statsignal Systems, Inc.Systems and methods for monitoring conditions
US8064412B2 (en)1998-06-222011-11-22Sipco, LlcSystems and methods for monitoring conditions
US9430936B2 (en)1998-06-222016-08-30Sipco LlcSystems and methods for monitoring and controlling remote devices
US8013732B2 (en)1998-06-222011-09-06Sipco, LlcSystems and methods for monitoring and controlling remote devices
US20050201397A1 (en)*1998-06-222005-09-15Statsignal Ipc, LlcSystems and methods for monitoring conditions
US20020125998A1 (en)*1998-06-222002-09-12Petite Thomas D.System and method for monitoring and controlling remote devices
US9691263B2 (en)1998-06-222017-06-27Sipco, LlcSystems and methods for monitoring conditions
US20040105533A1 (en)*1998-08-072004-06-03Input/Output, Inc.Single station wireless seismic data acquisition method and apparatus
US8369967B2 (en)1999-02-012013-02-05Hoffberg Steven MAlarm system controller and a method for controlling an alarm system
US9535563B2 (en)1999-02-012017-01-03Blanding Hovenweep, LlcInternet appliance system and method
US10361802B1 (en)1999-02-012019-07-23Blanding Hovenweep, LlcAdaptive pattern recognition based control system and method
US20050061056A1 (en)*1999-03-032005-03-24Smiths Detection-Pasadena, Inc.Apparatus, systems and methods for detecting and transmitting sensory data over a computer network
US7089780B2 (en)*1999-03-032006-08-15Smiths Detection Inc.Apparatus, systems and methods for detecting and transmitting sensory data over a computer network
US8930571B2 (en)1999-03-182015-01-06Sipco, LLPSystems and methods for controlling communication between a host computer and communication devices
US8924587B2 (en)1999-03-182014-12-30Sipco, LlcSystems and methods for controlling communication between a host computer and communication devices
US8924588B2 (en)1999-03-182014-12-30Sipco, LlcSystems and methods for controlling communication between a host computer and communication devices
WO2001026329A3 (en)*1999-10-062002-02-07Sensoria CorpMethod for the networking of sensors
US7891004B1 (en)1999-10-062011-02-15Gelvin David CMethod for vehicle internetworks
WO2001026330A3 (en)*1999-10-062002-03-21Sensoria CorpMethod for the networking of sensors
US8140658B1 (en)*1999-10-062012-03-20Borgia/Cummins, LlcApparatus for internetworked wireless integrated network sensors (WINS)
US7484008B1 (en)1999-10-062009-01-27Borgia/Cummins, LlcApparatus for vehicle internetworks
US8836503B2 (en)1999-10-062014-09-16Borgia/Cummins, LlcApparatus for compact internetworked wireless integrated network sensors (WINS)
WO2001026328A3 (en)*1999-10-062002-03-21Sensoria CorpApparatus for networking sensors
WO2001026333A3 (en)*1999-10-062002-04-18Sensoria CorpMethod for sensor networking
US8832244B2 (en)1999-10-062014-09-09Borgia/Cummins, LlcApparatus for internetworked wireless integrated network sensors (WINS)
US10757000B2 (en)1999-10-062020-08-25Behnov GMBH, LLCApparatus for internetworked wireless integrated network sensors (WINS)
WO2001026327A3 (en)*1999-10-062002-07-11Sensoria CorpApparatus for sensor networking
US8812654B2 (en)*1999-10-062014-08-19Borgia/Cummins, LlcMethod for internetworked hybrid wireless integrated network sensors (WINS)
US7904569B1 (en)1999-10-062011-03-08Gelvin David CMethod for remote access of vehicle components
US7020701B1 (en)*1999-10-062006-03-28Sensoria CorporationMethod for collecting and processing data using internetworked wireless integrated network sensors (WINS)
US8079118B2 (en)1999-10-062011-12-20Borgia/Cummins, LlcMethod for vehicle internetworks
US8601595B2 (en)1999-10-062013-12-03Borgia/Cummins, LlcMethod for vehicle internetworks
US7797367B1 (en)1999-10-062010-09-14Gelvin David CApparatus for compact internetworked wireless integrated network sensors (WINS)
US7844687B1 (en)1999-10-062010-11-30Gelvin David CMethod for internetworked hybrid wireless integrated network sensors (WINS)
US9628365B2 (en)1999-10-062017-04-18Benhov Gmbh, LlcApparatus for internetworked wireless integrated network sensors (WINS)
US20110029644A1 (en)*1999-10-062011-02-03Gelvin David CMethod for Vehicle Internetworks
US6859831B1 (en)*1999-10-062005-02-22Sensoria CorporationMethod and apparatus for internetworked wireless integrated network sensor (WINS) nodes
US6832251B1 (en)*1999-10-062004-12-14Sensoria CorporationMethod and apparatus for distributed signal processing among internetworked wireless integrated network sensors (WINS)
US6826607B1 (en)*1999-10-062004-11-30Sensoria CorporationApparatus for internetworked hybrid wireless integrated network sensors (WINS)
US6735630B1 (en)*1999-10-062004-05-11Sensoria CorporationMethod for collecting data using compact internetworked wireless integrated network sensors (WINS)
US20110035491A1 (en)*1999-10-062011-02-10Gelvin David CMethod for Internetworked Hybrid Wireless Integrated Network Sensors (WINS)
US20020024450A1 (en)*1999-12-062002-02-28Townsend Christopher P.Data collection and storage device
US7478108B2 (en)*1999-12-062009-01-13Micro Strain, Inc.Data collection using sensing units and separate control units with all power derived from the control units
US6492927B2 (en)*2000-04-182002-12-10Sony CorporationDigital-signal receiving apparatus
US20030001230A1 (en)*2000-06-302003-01-02Lowrey Tyler A.Three dimensional programmable device and method for fabricating the same
US7247876B2 (en)*2000-06-302007-07-24Intel CorporationThree dimensional programmable device and method for fabricating the same
US6580979B2 (en)2000-07-102003-06-17Hrl Laboratories, LlcMethod and apparatus for terrain reasoning with distributed embedded processing elements
US6507771B2 (en)2000-07-102003-01-14Hrl LaboratoriesMethod and apparatus for controlling the movement of a plurality of agents
US7113746B2 (en)2000-08-012006-09-26Hrl Laboratories, LlcMethod and apparatus for signaling among a plurality of agents
US20020094780A1 (en)*2000-08-012002-07-18Payton David W.Method and apparatus for signaling among a plurality of agents
US7612324B1 (en)2000-09-272009-11-03Hrl Laboratories, LlcDistributed display composed of active fiducials
US7158511B2 (en)2000-09-272007-01-02Hrl Laboratories, LlcMethod and apparatus for providing directed communications through a networked array of nodes
US8035078B1 (en)2000-09-272011-10-11Hrl Laboratories, LlcDistributed display composed of active fiducials
US20050132080A1 (en)*2000-10-312005-06-16Millennial Net, A Massachusetts CorporationCoordinating protocol for a multi-processor system
US6816862B2 (en)2001-01-172004-11-09Tiax LlcSystem for and method of relational database modeling of ad hoc distributed sensor networks
US20030014521A1 (en)*2001-06-282003-01-16Jeremy ElsonOpen platform architecture for shared resource access management
US7207041B2 (en)2001-06-282007-04-17Tranzeo Wireless Technologies, Inc.Open platform architecture for shared resource access management
US20040039502A1 (en)*2001-06-292004-02-26Wilson Bary W.Diagnostics/prognostics using wireless links
WO2003003754A3 (en)*2001-06-292003-10-23Vivactiss BvbaIntelligent microplates with remote data access
US6941202B2 (en)2001-06-292005-09-06Battelle Memorial InstituteDiagnostics/prognostics using wireless links
US20040219068A1 (en)*2001-06-292004-11-04Gerwen Peter VanIntelligent microplates with remote data access
US6889165B2 (en)*2001-07-022005-05-03Battelle Memorial InstituteApplication specific intelligent microsensors
US20030012168A1 (en)*2001-07-032003-01-16Jeremy ElsonLow-latency multi-hop ad hoc wireless network
US7161926B2 (en)2001-07-032007-01-09Sensoria CorporationLow-latency multi-hop ad hoc wireless network
US7277414B2 (en)2001-08-032007-10-02Honeywell International Inc.Energy aware network management
WO2003015452A3 (en)*2001-08-032003-05-30Honeywell Int IncEnergy aware network management
US20030063585A1 (en)*2001-08-032003-04-03Honeywell International Inc.Energy aware network management
US6505086B1 (en)2001-08-132003-01-07William A. Dodd, Jr.XML sensor system
US6813526B1 (en)2001-08-132004-11-02William A. Dodd, Jr.Fleet maintenance method
US20040233873A1 (en)*2001-09-202004-11-25Hwang LeeMultiple access method for sharing pseudo-noise code by time division transmission in wireless telemetry system
US10149129B2 (en)2001-10-242018-12-04Sipco, LlcSystems and methods for providing emergency messages to a mobile device
US8666357B2 (en)2001-10-242014-03-04Sipco, LlcSystem and method for transmitting an emergency message over an integrated wireless network
US10687194B2 (en)2001-10-242020-06-16Sipco, LlcSystems and methods for providing emergency messages to a mobile device
US9282029B2 (en)2001-10-242016-03-08Sipco, Llc.System and method for transmitting an emergency message over an integrated wireless network
US9615226B2 (en)2001-10-242017-04-04Sipco, LlcSystem and method for transmitting an emergency message over an integrated wireless network
US8489063B2 (en)2001-10-242013-07-16Sipco, LlcSystems and methods for providing emergency messages to a mobile device
US9515691B2 (en)2001-10-302016-12-06Sipco, Llc.System and method for transmitting pollution information over an integrated wireless network
US8171136B2 (en)2001-10-302012-05-01Sipco, LlcSystem and method for transmitting pollution information over an integrated wireless network
US9111240B2 (en)2001-10-302015-08-18Sipco, Llc.System and method for transmitting pollution information over an integrated wireless network
EP1461629A4 (en)*2001-11-272006-03-22Xsilogy IncRemote battery monitoring systems and sensors
US7522563B2 (en)2001-11-282009-04-21Millennial Net, Inc.Network protocol
US20090092069A1 (en)*2001-11-282009-04-09Millennial Net, Inc.Network protocol
US8098615B2 (en)2001-11-282012-01-17Millennial Net, Inc.Network protocol
US7948930B2 (en)2001-11-282011-05-24Millennial Net, Inc.Network protocol
US20150063325A1 (en)*2001-11-302015-03-05Iii Holdings 1, LlcReceiver scheduling in wireless networks
US7421257B1 (en)*2001-11-302008-09-02Stragent, LlcReceiver scheduling in ad hoc wireless networks
US9674858B2 (en)*2001-11-302017-06-06Iii Holdings 1, LlcReceiver scheduling in wireless networks
US20200205172A1 (en)*2001-11-302020-06-25Iii Holdings 1, LlcScheduling communications in a wireless network
US10863528B2 (en)*2001-11-302020-12-08Iii Holdings 1, LlcScheduling communications in a wireless network
US20170135122A1 (en)*2001-11-302017-05-11Iii Holdings 1, LlcScheduling communications in a wireless network
US10588139B2 (en)*2001-11-302020-03-10Iii Holdings 1, LlcScheduling communications in a wireless network
US7020501B1 (en)*2001-11-302006-03-28Bbnt Solutions LlcEnergy efficient forwarding in ad-hoc wireless networks
US7979096B1 (en)2001-11-302011-07-12Tri-County Excelsior FoundationEnergy efficient forwarding in ad-hoc wireless networks
US7979098B1 (en)2001-11-302011-07-12Tri-County Excelsior FounationReceiver scheduling in ad hoc wireless networks
US20080031213A1 (en)*2002-01-022008-02-07Kaiser William JAutonomous tracking wireless imaging sensor network
WO2003061175A3 (en)*2002-01-102003-10-16Bosch Gmbh RobertSelf-organizing hierarchical wireless network for surveillance and control
US8194571B2 (en)2002-01-102012-06-05Robert Bosch GmbhProtocol for reliable, self-organizing, low-power wireless network for security and building automation systems
US20030151513A1 (en)*2002-01-102003-08-14Falk HerrmannSelf-organizing hierarchical wireless network for surveillance and control
US20090103456A1 (en)*2002-01-102009-04-23Falk HerrmannProtocol for reliable, self-organizing, low-power wireless network for security and building automation systems
US7483403B2 (en)2002-01-102009-01-27Robert Bosch GmbhProtocol for reliable, self-organizing, low-power wireless network for security and building automation systems
US20030152041A1 (en)*2002-01-102003-08-14Falk HerrmannProtocol for reliable, self-organizing, low-power wireless network for security and building automation systems
US10559193B2 (en)2002-02-012020-02-11Comcast Cable Communications, LlcPremises management systems
US6885303B2 (en)*2002-02-152005-04-26Hrl Laboratories, LlcMotion prediction within an amorphous sensor array
US20030233211A1 (en)*2002-02-152003-12-18Payton David W.Motion prediction within an amorphous sensor array
US20030160701A1 (en)*2002-02-252003-08-28Omron CorporationProximate sensor using micro impulse waves for monitoring the status of an object, and monitoring system employing the same
US6954145B2 (en)*2002-02-252005-10-11Omron CorporationProximate sensor using micro impulse waves for monitoring the status of an object, and monitoring system employing the same
US20070192870A1 (en)*2002-05-202007-08-16Airdefense, Inc., A Georgia CorporationMethod and system for actively defending a wireless LAN against attacks
US7526808B2 (en)*2002-05-202009-04-28Airdefense, Inc.Method and system for actively defending a wireless LAN against attacks
US20080047329A1 (en)*2002-06-112008-02-28Intelligent Technologies International, Inc.Remote Monitoring of Fluid Reservoirs
US6873256B2 (en)*2002-06-212005-03-29Dorothy LemelsonIntelligent building alarm
US20030236866A1 (en)*2002-06-242003-12-25Intel CorporationSelf-surveying wireless network
US7075455B2 (en)*2002-06-282006-07-11Canon Kabushiki KaishaWireless communication apparatus and method
US20040005889A1 (en)*2002-06-282004-01-08Naoki NishimuraWireless communication apparatus and method
US20040135698A1 (en)*2002-08-302004-07-15Craig WebbSensor apparatus and method for detecting earthquake generated P-waves and generating a responsive control signal
US7005993B2 (en)*2002-08-302006-02-28Seismic Warning Systems, Inc.Sensor apparatus and method for detecting earthquake generated P-waves and generating a responsive control signal
US20050180356A1 (en)*2002-10-012005-08-18Graviton, Inc.Multi-channel wireless broadcast protocol for a self-organizing network
US7440735B2 (en)2002-10-232008-10-21Rosemount Inc.Virtual wireless transmitter
US20040203434A1 (en)*2002-10-232004-10-14Rosemount, Inc.Virtual wireless transmitter
US20090007706A1 (en)*2002-10-282009-01-08Hitt Dale KWireless Sensor Probe
US8104993B2 (en)2002-10-282012-01-31Digital Sun, Inc.Irrigation zone time control
US20100152909A1 (en)*2002-10-282010-06-17Hitt Dale KIrrigation Zone Time Control
US20110137472A1 (en)*2002-10-282011-06-09Hitt Dale KControl Method Of Wireless Irrigation
US8812007B2 (en)2002-10-282014-08-19Digital Sun, Inc.Control method of wireless irrigation
US20080274701A1 (en)*2002-11-212008-11-06Arati ManjeshwarMethod and system to reconfigure a network to improve network lifetime using most reliable communication links
US20060291327A1 (en)*2002-11-222006-12-28Simon BarakatSeismic acquisition system
US7573782B2 (en)*2002-11-222009-08-11Westerngeco L. L. C.Seismic acquisition system
US6909985B2 (en)*2002-11-272005-06-21Lockheed Martin CorporationMethod and apparatus for recording changes associated with acceleration of a structure
US20040102918A1 (en)*2002-11-272004-05-27Stana James M.Method and apparatus for recording changes associated with acceleration of a structure
WO2004051284A1 (en)*2002-11-272004-06-17Lockheed Martin CorporationMethod and apparatus for recording changes associated with acceleration of a structure
US11445523B2 (en)*2002-12-232022-09-13Iii Holdings 1, LlcScheduling communications in a wireless network
US20040125811A1 (en)*2002-12-272004-07-01Raad RaadMethod and wireless sensor platform for establishing pair-wise communication
WO2004062236A1 (en)*2002-12-272004-07-22Motorola, Inc., A Corporation Of The State Of DelawareMethod and wireless sensor platform for establishing pair-wise communication
US20060145842A1 (en)*2003-02-032006-07-06Stilp Louis AMulti-level meshed security network
US20060132302A1 (en)*2003-02-032006-06-22Stilp Louis APower management of transponders and sensors in an RFID security network
US7495544B2 (en)2003-02-032009-02-24Ingrid, Inc.Component diversity in a RFID security network
US7283048B2 (en)2003-02-032007-10-16Ingrid, Inc.Multi-level meshed security network
US20040160309A1 (en)*2003-02-032004-08-19Stilp Louis A.Communications control in a security system
US7511614B2 (en)2003-02-032009-03-31Ingrid, Inc.Portable telephone in a security network
US7091827B2 (en)2003-02-032006-08-15Ingrid, Inc.Communications control in a security system
US7084756B2 (en)2003-02-032006-08-01Ingrid, Inc.Communications architecture for a security network
US7079020B2 (en)2003-02-032006-07-18Ingrid, Inc.Multi-controller security network
US7202789B1 (en)2003-02-032007-04-10Ingrid, Inc.Clip for RFID transponder of a security network
US7119658B2 (en)2003-02-032006-10-10Ingrid, Inc.Device enrollment in a security system
US7079034B2 (en)2003-02-032006-07-18Ingrid, Inc.RFID transponder for a security system
US7532114B2 (en)2003-02-032009-05-12Ingrid, Inc.Fixed part-portable part communications network for a security network
US20040160324A1 (en)*2003-02-032004-08-19Stilp Louis A.Controller for a security system
US20040160306A1 (en)*2003-02-032004-08-19Stilp Louis A.Device enrollment in a security system
US20040150521A1 (en)*2003-02-032004-08-05Stilp Louis A.RFID based security system
US20060132301A1 (en)*2003-02-032006-06-22Stilp Louis AFixed part-portable part communications network for a security network
US20060132303A1 (en)*2003-02-032006-06-22Stilp Louis AComponent diversity in a RFID security network
US20040160323A1 (en)*2003-02-032004-08-19Stilp Louis A.RFID transponder for a security system
US7057512B2 (en)2003-02-032006-06-06Ingrid, Inc.RFID reader for a security system
US20040160322A1 (en)*2003-02-032004-08-19Stilp Louis A.RFID reader for a security system
US7053764B2 (en)2003-02-032006-05-30Ingrid, Inc.Controller for a security system
US7042353B2 (en)2003-02-032006-05-09Ingrid, Inc.Cordless telephone system
US20080001734A1 (en)*2003-02-032008-01-03Stilp Louis APortable telephone in a security network
US7023341B2 (en)2003-02-032006-04-04Ingrid, Inc.RFID reader for a security network
US7019639B2 (en)2003-02-032006-03-28Ingrid, Inc.RFID based security network
US20040212494A1 (en)*2003-02-032004-10-28Stilp Louis A.Cordless telephone system
US20040212497A1 (en)*2003-02-032004-10-28Stilp Louis A.Multi-controller security network
US20040212493A1 (en)*2003-02-032004-10-28Stilp Louis A.RFID reader for a security network
US20040212500A1 (en)*2003-02-032004-10-28Stilp Louis A.RFID based security network
US20040167750A1 (en)*2003-02-242004-08-26Pagnano Marco Aurelio De OliveiraArrangements and methods for monitoring processes and devices using a web service
US7110843B2 (en)2003-02-242006-09-19Smar Research CorporationArrangements and methods for monitoring processes and devices using a web service
US6998985B2 (en)2003-03-052006-02-14Dmatek, Ltd.Monitoring and tracking network
US20040174264A1 (en)*2003-03-052004-09-09Dmatek Ltd.Monitoring and tracking network
US20040210878A1 (en)*2003-04-152004-10-21Pagnano Marco Aurelio De OliveiraArrangements, storage mediums and methods for transmitting a non-proprietary language Device Description file associated with a field device using a Web Service
US7266812B2 (en)2003-04-152007-09-04Smar Research CorporationArrangements, storage mediums and methods for transmitting a non-proprietary language device description file associated with a field device using a web service
US20040224713A1 (en)*2003-04-162004-11-11Karlheinz SchreyerMethod for radio transmission in an alarm signaling system
US7248854B2 (en)*2003-04-162007-07-24Siemens AktiengesellschaftMethod for radio transmission in an alarm signaling system
US20040215750A1 (en)*2003-04-282004-10-28Stilp Louis A.Configuration program for a security system
US7046166B2 (en)2003-04-292006-05-16Rockwell Scientific Licensing, LlcModular wireless integrated network sensor (WINS) node with a dual bus architecture
US20040217881A1 (en)*2003-04-292004-11-04Innovative Technology Licensing, LlcModular wireless integrated network sensor (WINS) node with a dual bus architecture
US20040230582A1 (en)*2003-05-132004-11-18Pagnano Marco Aurelio De OliveiraArrangement, storage medium and method for providing information which is obtained via a device type manager, and transmitted in an extensible mark-up language format or a hypertext mark-up language format
US20040230899A1 (en)*2003-05-132004-11-18Pagnano Marco Aurelio De OliveiraArrangements, storage mediums and methods for associating an extensible stylesheet language device description file with a non- proprietary language device description file
US10557958B2 (en)2003-05-302020-02-11Magseis Ff LlcOcean bottom seismometer package
US8879362B2 (en)2003-05-302014-11-04Fairfield Industries, Inc.Ocean bottom seismometer package
US9829594B2 (en)2003-05-302017-11-28Fairfield Industries, Inc.Ocean bottom seismometer package
US7561493B2 (en)*2003-05-302009-07-14Fairfield Industries, Inc.Method and apparatus for land based seismic data acquisition
US10539696B2 (en)2003-05-302020-01-21Magseis Ff LlcOcean bottom seismometer package
US10422908B2 (en)2003-05-302019-09-24Magseis Ff LlcOcean bottom seismometer package
US20040257913A1 (en)*2003-05-302004-12-23Ray Clifford H.Method and apparatus for land based seismic data acquisition
US9829589B2 (en)2003-05-302017-11-28Fairfield Industries, Inc.Ocean bottom seismometer package
US11237285B2 (en)2003-05-302022-02-01Magseis Ff LlcOcean bottom seismometer package
US20100128634A1 (en)*2003-06-052010-05-27Millennial Net, Inc.Protocol for configuring a wireless network
US7313399B2 (en)2003-06-052007-12-25Millennial Net, Inc.Protocol for configuring a wireless network
US20050037789A1 (en)*2003-06-052005-02-17Sokwoo RheeProtocol for configuring a wireless network
US7606572B2 (en)2003-06-052009-10-20Millennial Net, Inc.Protocol for configuring a wireless network
US20080062941A1 (en)*2003-06-052008-03-13Millennial Net, Inc. A Delaware CorporationProtocol for configuring a wireless network
US9779619B2 (en)2003-07-072017-10-03Industrial Technology Research Institute And Hsiang-Tsung KungMethods and systems for operating a logical sensor network
US9626862B2 (en)2003-07-072017-04-18Industrial Technology Research InstituteMethods and systems for operating a logical sensor network
US20050021724A1 (en)*2003-07-072005-01-27Industrial Technology Research Institute And Hsiang-Tsung KungMethods and systems for operating a logical sensor network
US9747788B2 (en)2003-07-072017-08-29Industrial Technology Research InstituteMethods and systems for operating a logical sensor network
US7542437B1 (en)2003-10-022009-06-02Bbn Technologies Corp.Systems and methods for conserving energy in a communications network
US7119676B1 (en)2003-10-092006-10-10Innovative Wireless Technologies, Inc.Method and apparatus for multi-waveform wireless sensor network
US7301477B2 (en)*2003-10-312007-11-27Nec CorporationPower saving wireless telemetering system
US20050122233A1 (en)*2003-10-312005-06-09Nec CorporationPower saving wireless telemetering system
US8873335B1 (en)2003-11-212014-10-28Fairfield Industries, Inc.Method and system for transmission of seismic data
US8605547B2 (en)2003-11-212013-12-10Fairfield Industries, IncorporatedMethod for transmission of seismic data
US9500757B2 (en)2003-11-212016-11-22Fairfield Industries, Inc.Method and system for transmission of seismic data
US10670749B2 (en)2003-11-212020-06-02Magseis Ff LlcMethod and system for transmission of seismic data
US8873336B1 (en)2003-11-212014-10-28Fairfield Industries, Inc.Method and system for transmission of seismic data
US7983847B2 (en)2003-11-212011-07-19Fairfield Industries, IncorporatedMethod and system for the transmission of seismic data
US20060212226A1 (en)*2003-11-212006-09-21Ray Clifford HMethod and system for the transmission of seismic data
US8228759B2 (en)2003-11-212012-07-24Fairfield Industries IncorporatedSystem for transmission of seismic data
US9459360B2 (en)2003-11-212016-10-04Fairfield Industries IncorporatedMethod and system for transmission of seismic data
US8867310B1 (en)2003-11-212014-10-21Fairfield Industries, Inc.Method and system for transmission of seismic data
US9470809B2 (en)2003-11-212016-10-18Fairfield Industries, Inc.Method and system for transmission of seismic data
US8681584B2 (en)2003-11-212014-03-25Fairfield IncorporatedMethod and system for transmission of seismic data
US8879356B1 (en)2003-11-212014-11-04Fairfield Industries, Inc.Method and system for transmission of seismic data
US8885441B1 (en)2003-11-212014-11-11Fairfield Industries, Inc.Method and system for transmission of seismic data
US20090225629A1 (en)*2003-11-212009-09-10Ray Clifford HMethod and system for transmission of seismic data
US8867309B2 (en)2003-11-212014-10-21Fairfield Industries IncorporatedMethod and system for transmission of seismic data
US8644111B2 (en)2003-11-212014-02-04Fairfield Industries, Inc.Method and system for transmission of seismic data
US7738413B2 (en)2003-12-082010-06-15The Regents Of The University Of CaliforniaMinimizing power consumption in a wireless system for a sensor networks using time slots for nodes
US20050122231A1 (en)*2003-12-082005-06-09The Regents Of The University Of CaliforniaPower efficient wireless system for sensor network
US7274907B1 (en)2003-12-192007-09-25Unites States Of America As Represented By The Administrator Of The National Aeronautics And Space AdministrationWireless instrumentation system and power management scheme therefore
WO2005067231A1 (en)*2003-12-312005-07-21Symbol Technologies, Inc.System and a node used in the system for wireless communication and sensory monitoring
US7433648B2 (en)2003-12-312008-10-07Symbol Technologies, Inc.System and a node used in the system for wireless communication and sensory monitoring
US20050143133A1 (en)*2003-12-312005-06-30Raj BridgelallSystem and a node used in the system for wireless communication and sensory monitoring
US20050159905A1 (en)*2004-01-162005-07-21Lpg Central, Inc.System and method for remote asset monitoring
US7337078B2 (en)2004-01-162008-02-26Worldtelemetry, Inc.System and method for remote asset monitoring
US7986589B2 (en)*2004-01-282011-07-26Fairfield Industries IncorporatedApparatus for seismic data acquisition
CN102590855A (en)*2004-01-282012-07-18费尔菲尔德工业公司Method and apparatus for land based seismic data acquisition
US20100039892A1 (en)*2004-01-282010-02-18Fairfield Industries IncorporatedApparatus for seismic data acquisition
USRE45268E1 (en)*2004-01-282014-12-02Fairfield Industries, Inc.Apparatus for seismic data acquisition
US7551892B1 (en)2004-02-262009-06-23Bbn Technologies CorpLow-power ad hoc network entry
US8379564B2 (en)2004-03-032013-02-19Sipco, LlcSystem and method for monitoring remote devices with a dual-mode wireless communication protocol
US8031650B2 (en)2004-03-032011-10-04Sipco, LlcSystem and method for monitoring remote devices with a dual-mode wireless communication protocol
US8446884B2 (en)2004-03-032013-05-21Sipco, LlcDual-mode communication devices, methods and systems
US11082395B2 (en)2004-03-162021-08-03Icontrol Networks, Inc.Premises management configuration and control
US11677577B2 (en)2004-03-162023-06-13Icontrol Networks, Inc.Premises system management using status signal
US11626006B2 (en)2004-03-162023-04-11Icontrol Networks, Inc.Management of a security system at a premises
US12253833B2 (en)2004-03-162025-03-18Icontrol Networks, Inc.Automation system with mobile interface
US10447491B2 (en)2004-03-162019-10-15Icontrol Networks, Inc.Premises system management using status signal
US10156831B2 (en)2004-03-162018-12-18Icontrol Networks, Inc.Automation system with mobile interface
US10754304B2 (en)2004-03-162020-08-25Icontrol Networks, Inc.Automation system with mobile interface
US12063220B2 (en)2004-03-162024-08-13Icontrol Networks, Inc.Communication protocols in integrated systems
US11656667B2 (en)2004-03-162023-05-23Icontrol Networks, Inc.Integrated security system with parallel processing architecture
US10796557B2 (en)2004-03-162020-10-06Icontrol Networks, Inc.Automation system user interface with three-dimensional display
US11601397B2 (en)2004-03-162023-03-07Icontrol Networks, Inc.Premises management configuration and control
US11184322B2 (en)2004-03-162021-11-23Icontrol Networks, Inc.Communication protocols in integrated systems
US11159484B2 (en)2004-03-162021-10-26Icontrol Networks, Inc.Forming a security network including integrated security system components and network devices
US11449012B2 (en)2004-03-162022-09-20Icontrol Networks, Inc.Premises management networking
US11277465B2 (en)2004-03-162022-03-15Icontrol Networks, Inc.Generating risk profile using data of home monitoring and security system
US11175793B2 (en)2004-03-162021-11-16Icontrol Networks, Inc.User interface in a premises network
US11489812B2 (en)2004-03-162022-11-01Icontrol Networks, Inc.Forming a security network including integrated security system components and network devices
US11625008B2 (en)2004-03-162023-04-11Icontrol Networks, Inc.Premises management networking
US11201755B2 (en)2004-03-162021-12-14Icontrol Networks, Inc.Premises system management using status signal
US11310199B2 (en)2004-03-162022-04-19Icontrol Networks, Inc.Premises management configuration and control
US11991306B2 (en)2004-03-162024-05-21Icontrol Networks, Inc.Premises system automation
US11244545B2 (en)2004-03-162022-02-08Icontrol Networks, Inc.Cross-client sensor user interface in an integrated security network
US10142166B2 (en)2004-03-162018-11-27Icontrol Networks, Inc.Takeover of security network
US11782394B2 (en)2004-03-162023-10-10Icontrol Networks, Inc.Automation system with mobile interface
US10692356B2 (en)2004-03-162020-06-23Icontrol Networks, Inc.Control system user interface
US11343380B2 (en)2004-03-162022-05-24Icontrol Networks, Inc.Premises system automation
US10890881B2 (en)2004-03-162021-01-12Icontrol Networks, Inc.Premises management networking
US11410531B2 (en)2004-03-162022-08-09Icontrol Networks, Inc.Automation system user interface with three-dimensional display
US10691295B2 (en)2004-03-162020-06-23Icontrol Networks, Inc.User interface in a premises network
US11893874B2 (en)2004-03-162024-02-06Icontrol Networks, Inc.Networked touchscreen with integrated interfaces
US11043112B2 (en)2004-03-162021-06-22Icontrol Networks, Inc.Integrated security system with parallel processing architecture
US11916870B2 (en)2004-03-162024-02-27Icontrol Networks, Inc.Gateway registry methods and systems
US11368429B2 (en)2004-03-162022-06-21Icontrol Networks, Inc.Premises management configuration and control
US11378922B2 (en)2004-03-162022-07-05Icontrol Networks, Inc.Automation system with mobile interface
US11810445B2 (en)2004-03-162023-11-07Icontrol Networks, Inc.Cross-client sensor user interface in an integrated security network
US11811845B2 (en)2004-03-162023-11-07Icontrol Networks, Inc.Communication protocols over internet protocol (IP) networks
US11757834B2 (en)2004-03-162023-09-12Icontrol Networks, Inc.Communication protocols in integrated systems
US11153266B2 (en)2004-03-162021-10-19Icontrol Networks, Inc.Gateway registry methods and systems
US10979389B2 (en)2004-03-162021-04-13Icontrol Networks, Inc.Premises management configuration and control
US11037433B2 (en)2004-03-162021-06-15Icontrol Networks, Inc.Management of a security system at a premises
US11537186B2 (en)2004-03-162022-12-27Icontrol Networks, Inc.Integrated security system with parallel processing architecture
US11182060B2 (en)2004-03-162021-11-23Icontrol Networks, Inc.Networked touchscreen with integrated interfaces
US11588787B2 (en)2004-03-162023-02-21Icontrol Networks, Inc.Premises management configuration and control
US10992784B2 (en)2004-03-162021-04-27Control Networks, Inc.Communication protocols over internet protocol (IP) networks
US10735249B2 (en)2004-03-162020-08-04Icontrol Networks, Inc.Management of a security system at a premises
US7231180B2 (en)2004-03-242007-06-12Honeywell International, Inc.Aircraft engine sensor network using wireless sensor communication modules
US20050213548A1 (en)*2004-03-242005-09-29Benson Dwayne MAircraft engine sensor network using wireless sensor communication modules
US7725080B2 (en)2004-03-312010-05-25The Invention Science Fund I, LlcMote networks having directional antennas
US20080207121A1 (en)*2004-03-312008-08-28Searete Llc, A Limited Liability Corporation Of The State Of DelawareMote networks having directional antennas
US8271449B2 (en)2004-03-312012-09-18The Invention Science Fund I, LlcAggregation and retrieval of mote network data
US7706842B2 (en)2004-03-312010-04-27Searete, LlcMote networks having directional antennas
US8161097B2 (en)2004-03-312012-04-17The Invention Science Fund I, LlcAggregating mote-associated index data
US7366544B2 (en)2004-03-312008-04-29Searete, LlcMote networks having directional antennas
US20050221761A1 (en)*2004-03-312005-10-06Searete Llc, A Limited Liability Corporation Of The State Of Delaware.Mote networks using directional antenna techniques
US20050220146A1 (en)*2004-03-312005-10-06Jung Edward K YTransmission of aggregated mote-associated index data
US20080171519A1 (en)*2004-03-312008-07-17Tegreene Clarence TMote networks having directional antennas
US20060079285A1 (en)*2004-03-312006-04-13Jung Edward K YTransmission of mote-associated index data
US20050227686A1 (en)*2004-03-312005-10-13Jung Edward K YFederating mote-associated index data
US20080064338A1 (en)*2004-03-312008-03-13Searete Llc, A Limited Liability Corporation Of The State Of DelawareMote networks using directional antenna techniques
US20080198079A1 (en)*2004-03-312008-08-21Searete Llc, A Limited Liability Corporation Of The State Of DelawareMote networks having directional antennas
US7317898B2 (en)2004-03-312008-01-08Searete LlcMote networks using directional antenna techniques
US20050227736A1 (en)*2004-03-312005-10-13Jung Edward K YMote-associated index creation
US20090282156A1 (en)*2004-03-312009-11-12Jung Edward K YOccurrence data detection and storage for mote networks
US7418238B2 (en)2004-03-312008-08-26Searete, LlcMote networks using directional antenna techniques
US20060026164A1 (en)*2004-03-312006-02-02Jung Edward KData storage for distributed sensor networks
US20050233699A1 (en)*2004-03-312005-10-20Searete Llc, A Limited Liability Corporation Of The State Of DelawareMote networks having directional antennas
US20050220142A1 (en)*2004-03-312005-10-06Jung Edward K YAggregating mote-associated index data
WO2005101710A3 (en)*2004-03-312007-09-13Searete LlcTransmission of aggregated mote-associated index data
US7941188B2 (en)2004-03-312011-05-10The Invention Science Fund I, LlcOccurrence data detection and storage for generalized sensor networks
US7580730B2 (en)2004-03-312009-08-25Searete, LlcMote networks having directional antennas
US7536388B2 (en)2004-03-312009-05-19Searete, LlcData storage for distributed sensor networks
US8335814B2 (en)2004-03-312012-12-18The Invention Science Fund I, LlcTransmission of aggregated mote-associated index data
US7929914B2 (en)2004-03-312011-04-19The Invention Science Fund I, LlcMote networks using directional antenna techniques
US8275824B2 (en)2004-03-312012-09-25The Invention Science Fund I, LlcOccurrence data detection and storage for mote networks
US20070238410A1 (en)*2004-03-312007-10-11Searete Llc, A Limited Liability Corporation Of The State Of DelawareMote networks using directional antenna techniques
US11650084B2 (en)2004-03-312023-05-16Alarm.Com IncorporatedEvent detection using pattern recognition criteria
WO2005103851A1 (en)2004-04-232005-11-03Endress+Hauser Process Solutions AgRadio module for field appliances used in automation systems
US20050256667A1 (en)*2004-05-122005-11-17Searete Llc, A Limited Liability Corporation Of The State Of DelawareFederating mote-associated log data
US20050254520A1 (en)*2004-05-122005-11-17Searete Llc, A Limited Liability Corporation Of The State Of DelawareTransmission of aggregated mote-associated log data
US20050265388A1 (en)*2004-05-122005-12-01Searete Llc, A Limited Liability Corporation Of The State Of DelawareAggregating mote-associated log data
US20050255841A1 (en)*2004-05-122005-11-17Searete LlcTransmission of mote-associated log data
US20050267960A1 (en)*2004-05-122005-12-01Searete Llc, A Limited Liability Corporation Of The State Of DelawareMote-associated log creation
US8346846B2 (en)2004-05-122013-01-01The Invention Science Fund I, LlcTransmission of aggregated mote-associated log data
US7715928B1 (en)*2004-05-172010-05-11University Of Southern CaliforniaEfficient communications and data compression algorithms in sensor networks using discrete wavelet transform
US20060004888A1 (en)*2004-05-212006-01-05Searete Llc, A Limited Liability Corporation Of The State DelawareUsing mote-associated logs
US9955423B2 (en)2004-05-272018-04-24Google LlcMeasuring environmental conditions over a defined time period within a wireless sensor system
US9019110B2 (en)2004-05-272015-04-28Google Inc.System and method for high-sensitivity sensor
US7982602B2 (en)2004-05-272011-07-19Lawrence KatesTesting for interference within a wireless sensor system
US9357490B2 (en)2004-05-272016-05-31Google Inc.Wireless transceiver
US9723559B2 (en)2004-05-272017-08-01Google Inc.Wireless sensor unit communication triggering and management
US8963728B2 (en)2004-05-272015-02-24Google Inc.System and method for high-sensitivity sensor
US20070211076A1 (en)*2004-05-272007-09-13Lawrence KatesMethod and apparatus for detecting water leaks
US7936264B2 (en)2004-05-272011-05-03Lawrence KatesMeasuring conditions within a wireless sensor system
US8963726B2 (en)2004-05-272015-02-24Google Inc.System and method for high-sensitivity sensor
US10573166B2 (en)2004-05-272020-02-25Google LlcRelaying communications in a wireless sensor system
US8963727B2 (en)2004-05-272015-02-24Google Inc.Environmental sensing systems having independent notifications across multiple thresholds
US20150065030A1 (en)*2004-05-272015-03-05Google Inc.Sensor chamber airflow management systems and methods
US10565858B2 (en)2004-05-272020-02-18Google LlcWireless transceiver
US7893812B2 (en)2004-05-272011-02-22Lawrence KatesAuthentication codes for building/area code address
US7893828B2 (en)2004-05-272011-02-22Lawrence KatesBi-directional hand-shaking sensor system
US10663443B2 (en)*2004-05-272020-05-26Google LlcSensor chamber airflow management systems and methods
US7893827B2 (en)2004-05-272011-02-22Lawrence KatesMethod of measuring signal strength in a wireless sensor system
US9318015B2 (en)2004-05-272016-04-19Google Inc.Wireless sensor unit communication triggering and management
US8981950B1 (en)2004-05-272015-03-17Google Inc.Sensor device measurements adaptive to HVAC activity
US9474023B1 (en)2004-05-272016-10-18Google Inc.Controlled power-efficient operation of wireless communication devices
US20060267756A1 (en)*2004-05-272006-11-30Lawrence KatesSystem and method for high-sensitivity sensor
US9007225B2 (en)2004-05-272015-04-14Google Inc.Environmental sensing systems having independent notifications across multiple thresholds
US7817031B2 (en)2004-05-272010-10-19Lawrence KatesWireless transceiver
US10229586B2 (en)2004-05-272019-03-12Google LlcRelaying communications in a wireless sensor system
US9412260B2 (en)2004-05-272016-08-09Google Inc.Controlled power-efficient operation of wireless communication devices
US7411494B2 (en)2004-05-272008-08-12Lawrence KatesWireless sensor unit
US9860839B2 (en)2004-05-272018-01-02Google LlcWireless transceiver
US20070090946A1 (en)*2004-05-272007-04-26Lawrence KatesWireless sensor unit
US20080278316A1 (en)*2004-05-272008-11-13Lawrence KatesWireless transceiver
US20080278342A1 (en)*2004-05-272008-11-13Lawrence KatesTesting for interference within a wireless sensor system
US9183733B2 (en)2004-05-272015-11-10Google Inc.Controlled power-efficient operation of wireless communication devices
US20080278310A1 (en)*2004-05-272008-11-13Lawrence KatesMethod of measuring signal strength in a wireless sensor system
US20080278315A1 (en)*2004-05-272008-11-13Lawrence KatesBi-directional hand-shaking sensor system
US9872249B2 (en)2004-05-272018-01-16Google LlcRelaying communications in a wireless sensor system
US9286787B2 (en)2004-05-272016-03-15Google Inc.Signal strength-based routing of network traffic in a wireless communication system
US9286788B2 (en)2004-05-272016-03-15Google Inc.Traffic collision avoidance in wireless communication systems
US7623028B2 (en)2004-05-272009-11-24Lawrence KatesSystem and method for high-sensitivity sensor
US20080303654A1 (en)*2004-05-272008-12-11Lawrence KatesMeasuring conditions within a wireless sensor system
US20050275547A1 (en)*2004-05-272005-12-15Lawrence KatesMethod and apparatus for detecting water leaks
US7583198B2 (en)2004-05-272009-09-01Lawrence KatesMethod and apparatus for detecting water leaks
US10015743B2 (en)2004-05-272018-07-03Google LlcRelaying communications in a wireless sensor system
US10861316B2 (en)2004-05-272020-12-08Google LlcRelaying communications in a wireless sensor system
US10395513B2 (en)2004-05-272019-08-27Google LlcRelaying communications in a wireless sensor system
US20080122938A1 (en)*2004-06-182008-05-29Emwitech Holding AbSystem for Surveillance and a Method for the Application Thereof
WO2005122710A3 (en)*2004-06-182006-02-16Emwitech Holding AbA system for surveillance and a method for the application thereof
WO2005122710A2 (en)2004-06-182005-12-29Emwitech Holding AbA system for surveillance and a method for the application thereof
US7599696B2 (en)2004-06-252009-10-06Searete, LlcFrequency reuse techniques in mote-appropriate networks
US20050289275A1 (en)*2004-06-252005-12-29Jung Edward KFrequency reuse techniques in mote-appropriate networks
US20050289122A1 (en)*2004-06-252005-12-29Jung Edward KUsing federated mote-associated logs
US20090216713A1 (en)*2004-06-252009-08-27Jung Edward K YUsing federated mote-associated logs
US7389295B2 (en)2004-06-252008-06-17Searete LlcUsing federated mote-associated logs
US8352420B2 (en)2004-06-252013-01-08The Invention Science Fund I, LlcUsing federated mote-associated logs
US20060062252A1 (en)*2004-06-302006-03-23Jung Edward KMote appropriate network power reduction techniques
US20060026132A1 (en)*2004-07-272006-02-02Jung Edward K YUsing mote-associated indexes
US9062992B2 (en)2004-07-272015-06-23TriPlay Inc.Using mote-associated indexes
US20060064402A1 (en)*2004-07-272006-03-23Jung Edward K YUsing federated mote-associated indexes
US20060046711A1 (en)*2004-07-302006-03-02Jung Edward KDiscovery of occurrence-data
US20060026118A1 (en)*2004-07-302006-02-02Jung Edward KAggregation and retrieval of network sensor data
US9261383B2 (en)2004-07-302016-02-16Triplay, Inc.Discovery of occurrence-data
US7457834B2 (en)2004-07-302008-11-25Searete, LlcAggregation and retrieval of network sensor data
US20060045055A1 (en)*2004-08-302006-03-02Padmaja RamadasMethod and apparatus for deploying an ad-hoc network
US7789321B2 (en)2004-09-072010-09-07Digital Sun, Inc.Wireless sprinkler control
US20060049271A1 (en)*2004-09-072006-03-09Hitt Dale KWireless sprinkler control
US8215570B2 (en)2004-09-072012-07-10Digital Sun, Inc.Wireless sprinkler control
US20110042480A1 (en)*2004-09-072011-02-24Hitt Dale KWireless Sprinkler Control
US7669461B2 (en)2004-09-232010-03-02Lawrence KatesSystem and method for utility metering and leak detection
US7412876B2 (en)2004-09-232008-08-19Lawrence KatesSystem and method for utility metering and leak detection
US20080302172A1 (en)*2004-09-232008-12-11Lawrence KatesSystem and method for utility metering and leak detection
US20060071757A1 (en)*2004-09-242006-04-06Burghard Brion JCommunication methods, systems, apparatus, and devices involving RF tag registration
US7362212B2 (en)2004-09-242008-04-22Battelle Memorial InstituteCommunication methods, systems, apparatus, and devices involving RF tag registration
US7433348B1 (en)*2004-10-222008-10-07Cypress Semiconductor Corp.Time division multiplexing protocol for wireless networks
US7330736B2 (en)2004-12-172008-02-12Bbn Technologies Corp.Methods and apparatus for reduced energy communication in an ad hoc network
US20060229083A1 (en)*2004-12-172006-10-12Bbn Technologies Corp.Methods and apparatus for reduced energy communication in an ad hoc network
US20060135145A1 (en)*2004-12-172006-06-22Bbnt Solutions LlcMethods and apparatus for reduced energy communication in an ad hoc network
WO2006067271A1 (en)2004-12-222006-06-29Mikko KohvakkaEnergy efficient wireless sensor network, node devices for the same and a method for arranging communications in a wireless sensor network
EP2991393A1 (en)2004-12-222016-03-02Wirepas OyNode device for a wireless sensor network
US8705314B2 (en)2005-01-172014-04-22Fairfield Industries IncorporatedMethod for deployment of ocean bottom seismometers
US10591624B2 (en)2005-01-172020-03-17Magseis Ff LlcMethod and system for deployment of ocean bottom seismometers
US8075226B2 (en)2005-01-172011-12-13Fairfield Industries IncorporatedMethod and apparatus for deployment of ocean bottom seismometers
US10598808B2 (en)2005-01-172020-03-24Magseis Ff LlcMethod and system for deployment of ocean bottom seismometers
US9630691B2 (en)2005-01-172017-04-25Fairfield Industries, Inc.Method and system for deployment of ocean bottom seismometers
US10502853B2 (en)2005-01-172019-12-10Magseis Ff LlcMethod and system for deployment of ocean bottom seismometers
US11131785B2 (en)2005-01-172021-09-28Magseis Ff LlcMethod and system for deployment of ocean bottom seismometers
US8534959B2 (en)2005-01-172013-09-17Fairfield Industries IncorporatedMethod and apparatus for deployment of ocean bottom seismometers
US8632274B2 (en)2005-01-172014-01-21Fairchild Industries, Inc.Deployment method for ocean bottom seismometers
US9439126B2 (en)2005-01-252016-09-06Sipco, LlcWireless network protocol system and methods
US10356687B2 (en)2005-01-252019-07-16Sipco, LlcWireless network protocol systems and methods
US9860820B2 (en)2005-01-252018-01-02Sipco, LlcWireless network protocol systems and methods
US11039371B2 (en)2005-01-252021-06-15Sipco, LlcWireless network protocol systems and methods
US20080186898A1 (en)*2005-01-252008-08-07Sipco, LlcWireless Network Protocol System And Methods
US9928726B2 (en)2005-02-082018-03-27Ftc Sensors, LlcSensor and transmission control circuit in adaptive interface package
US20060200542A1 (en)*2005-02-282006-09-07Tendril Networks, Inc.Apparatus and method for network-aware power management
US10062245B2 (en)2005-03-162018-08-28Icontrol Networks, Inc.Cross-client sensor user interface in an integrated security network
US9450776B2 (en)2005-03-162016-09-20Icontrol Networks, Inc.Forming a security network including integrated security system components
US10380871B2 (en)2005-03-162019-08-13Icontrol Networks, Inc.Control system user interface
US10999254B2 (en)2005-03-162021-05-04Icontrol Networks, Inc.System for data routing in networks
US11451409B2 (en)2005-03-162022-09-20Icontrol Networks, Inc.Security network integrating security system and network devices
US11496568B2 (en)2005-03-162022-11-08Icontrol Networks, Inc.Security system with networked touchscreen
US11706045B2 (en)2005-03-162023-07-18Icontrol Networks, Inc.Modular electronic display platform
US11700142B2 (en)2005-03-162023-07-11Icontrol Networks, Inc.Security network integrating security system and network devices
US10721087B2 (en)2005-03-162020-07-21Icontrol Networks, Inc.Method for networked touchscreen with integrated interfaces
US11792330B2 (en)2005-03-162023-10-17Icontrol Networks, Inc.Communication and automation in a premises management system
US11367340B2 (en)2005-03-162022-06-21Icontrol Networks, Inc.Premise management systems and methods
US12277853B2 (en)2005-03-162025-04-15Icontrol Networks, Inc.Gateway integrated with premises security system
US11113950B2 (en)2005-03-162021-09-07Icontrol Networks, Inc.Gateway integrated with premises security system
US10091014B2 (en)2005-03-162018-10-02Icontrol Networks, Inc.Integrated security network with security alarm signaling system
US10127801B2 (en)2005-03-162018-11-13Icontrol Networks, Inc.Integrated security system with parallel processing architecture
US11424980B2 (en)2005-03-162022-08-23Icontrol Networks, Inc.Forming a security network including integrated security system components
US10930136B2 (en)2005-03-162021-02-23Icontrol Networks, Inc.Premise management systems and methods
US10156959B2 (en)2005-03-162018-12-18Icontrol Networks, Inc.Cross-client sensor user interface in an integrated security network
US10841381B2 (en)2005-03-162020-11-17Icontrol Networks, Inc.Security system with networked touchscreen
US11595364B2 (en)2005-03-162023-02-28Icontrol Networks, Inc.System for data routing in networks
US11824675B2 (en)2005-03-162023-11-21Icontrol Networks, Inc.Networked touchscreen with integrated interfaces
US11615697B2 (en)2005-03-162023-03-28Icontrol Networks, Inc.Premise management systems and methods
US20070168412A1 (en)*2005-03-222007-07-19Aware Technologies, Inc.Distributed multi-nodal voice/data communication
US8707075B2 (en)2005-03-302014-04-22Memsic Transducer Systems Co., Ltd.Adaptive network and method
US8144197B2 (en)2005-03-302012-03-27Memsic Transducer Systems Co., LtdAdaptive surveillance network and method
US8189536B2 (en)2005-03-302012-05-29Memsic Transducer System Co., Ltd.Delivery of data packets via aggregated spatial distribution overlay on a mesh network
US7705729B2 (en)*2005-03-302010-04-27Memsic, Inc.Surveillance system and method
US20060229086A1 (en)*2005-03-302006-10-12Broad Alan SSurveillance system and method
US20070132846A1 (en)*2005-03-302007-06-14Alan BroadAdaptive network and method
US7760109B2 (en)2005-03-302010-07-20Memsic, Inc.Interactive surveillance network and method
US20070291689A1 (en)*2005-03-302007-12-20Crossbow Technology, Inc.Delivery of Data Packets via Aggregated Spatial Distribution Overlay on a Mesh Network
US20100013933A1 (en)*2005-03-302010-01-21Broad Alan SAdaptive surveillance network and method
US8115593B2 (en)2005-03-302012-02-14Memsic Transducer Systems Co., Ltd.Adaptive network and method
US20060220843A1 (en)*2005-03-302006-10-05Alan BroadInteractive surveillance network and method
US20070042706A1 (en)*2005-04-082007-02-22Vanderbilt UniversitySystem and methods of radio interference based localization in sensor networks
US7558583B2 (en)*2005-04-082009-07-07Vanderbilt UniversitySystem and methods of radio interference based localization in sensor networks
US20060247505A1 (en)*2005-04-282006-11-02Siddiqui Waqaas AWireless sensor system
US10216247B1 (en)2005-05-302019-02-26Invent.Ly, LlcSelf-powered devices and methods
US20110045875A1 (en)*2005-06-012011-02-24Sokwoo RheeCommunicating over a Wireless Network
US20060285579A1 (en)*2005-06-012006-12-21Sokwoo RheeCommunicating over a wireless network
US8271058B2 (en)2005-06-012012-09-18Millennial Net, Inc.Communicating over a wireless network
US7844308B2 (en)2005-06-012010-11-30Millennial Net, Inc.Communicating over a wireless network
US20080141754A1 (en)*2005-06-062008-06-19Lawrence KatesSystem and method for variable threshold sensor
US7336168B2 (en)2005-06-062008-02-26Lawrence KatesSystem and method for variable threshold sensor
US20060273896A1 (en)*2005-06-062006-12-07Lawrence KatesSystem and method for variable threshold sensor
US10425877B2 (en)2005-07-012019-09-24Google LlcMaintaining information facilitating deterministic network routing
US10813030B2 (en)2005-07-012020-10-20Google LlcMaintaining information facilitating deterministic network routing
US8306638B2 (en)2005-08-262012-11-06The Invention Science Fund I, LlcMote presentation affecting
US7708493B2 (en)2005-08-262010-05-04Searete, LlcModifiable display marker
US20070046497A1 (en)*2005-08-262007-03-01Jung Edward KStimulating a mote network for cues to mote location and layout
US20070046498A1 (en)*2005-08-262007-03-01K Y Jung EdwardMote presentation affecting
US8035509B2 (en)2005-08-262011-10-11The Invention Science Fund I, LlcStimulating a mote network for cues to mote location and layout
US8018335B2 (en)2005-08-262011-09-13The Invention Science Fund I, LlcMote device locating using impulse-mote-position-indication
US20070063836A1 (en)*2005-09-202007-03-22Hayden Craig AMethod and apparatus for adding wireless devices to a security system
US7576646B2 (en)*2005-09-202009-08-18Robert Bosch GmbhMethod and apparatus for adding wireless devices to a security system
US20070229237A1 (en)*2005-09-202007-10-04Lawrence KatesProgrammed wireless sensor system
US7230528B2 (en)*2005-09-202007-06-12Lawrence KatesProgrammed wireless sensor system
US20070063833A1 (en)*2005-09-202007-03-22Lawrence KatesProgrammed wireless sensor system
US20090153336A1 (en)*2005-09-232009-06-18Lawrence KatesMethod and apparatus for detecting moisture in building materials
US20070139208A1 (en)*2005-09-232007-06-21Lawrence KatesMethod and apparatus for detecting moisture in building materials
US20070070983A1 (en)*2005-09-282007-03-29Bbn Technologies Corp.Methods and apparatus for improved efficiency communication
US8031068B1 (en)*2005-12-132011-10-04Textron Systems CorporationSystem and method for detecting emplacement of improvised explosive devices
US8185343B1 (en)2005-12-132012-05-22Textron Systems CorporationBase station and method for detecting emplacement of improvised explosive devices
US7528711B2 (en)2005-12-192009-05-05Lawrence KatesPortable monitoring unit
US20070139183A1 (en)*2005-12-192007-06-21Lawrence KatesPortable monitoring unit
US8947297B2 (en)2006-01-302015-02-03The Invention Science Fund I, LlcPositional display elements
US7305327B2 (en)*2006-01-302007-12-04Sper Scientific LtdWireless meter for real time measurements and method therefor
US20100245243A1 (en)*2006-01-302010-09-30Searete Llc,A Limited Liability Corporation Of The State Of DelawarePositional display elements
US20070179754A1 (en)*2006-01-302007-08-02Sper Scientific Ltd.Wireless meter for real time measurements and method therefor
US20070236489A1 (en)*2006-01-302007-10-11Jung Edward KPositional display elements
US20070178842A1 (en)*2006-01-312007-08-02Mutsuya IiMethod and system for synchronizing geographically distributed RF sensors using a pair of RF triggering devices
US7460012B2 (en)*2006-01-312008-12-02Agilent Technologies, Inc.Method and system for synchronizing geographically distributed RF sensors using a pair of RF triggering devices
US20070190368A1 (en)*2006-02-132007-08-16Searete Llc, A Limited Liability Corporation Of The State Of DelawareCamouflage positional elements
US7999720B2 (en)2006-02-132011-08-16The Invention Science Fund I, LlcCamouflage positional elements
US20070249503A1 (en)*2006-04-242007-10-25Honeywell International Inc.Wireless sensor network with superconducting nodes
US7786885B2 (en)*2006-04-252010-08-31Hrl Laboratories, LlcEvent localization within a distributed sensor array
US20070247303A1 (en)*2006-04-252007-10-25Hrl Laboratories, LlcEvent localization within a distributed sensor array
US20070286020A1 (en)*2006-06-092007-12-13Input/Output, Inc.Heads-up Navigation for Seismic Data Acquisition
US20070286022A1 (en)*2006-06-092007-12-13Input/Output, Inc.Operating State Management for Seismic Data Acquisition
US8908472B2 (en)2006-06-092014-12-09Inova Ltd.Heads-up navigation for seismic data acquisition
US8135543B2 (en)2006-06-102012-03-13Inova Ltd.Apparatus and method for integrating survey parameters into a header
US8325561B2 (en)2006-06-102012-12-04Inova Ltd.Digital elevation model for use with seismic data acquisition systems
US20110125407A1 (en)*2006-06-102011-05-26Inova Ltd.Apparatus and Method for Integrating Survey Parameters into a Header
US20080021658A1 (en)*2006-06-102008-01-24Input/Output, Inc.Apparatus and Method for Integrating Survey Parameters Into a Header
US20070286023A1 (en)*2006-06-102007-12-13Input/Output, Inc.Digital Elevation Model for Use with Seismic Data Acquisition Systems
US12063221B2 (en)2006-06-122024-08-13Icontrol Networks, Inc.Activation of gateway device
US9621408B2 (en)2006-06-122017-04-11Icontrol Networks, Inc.Gateway registry methods and systems
US11418518B2 (en)2006-06-122022-08-16Icontrol Networks, Inc.Activation of gateway device
US10785319B2 (en)2006-06-122020-09-22Icontrol Networks, Inc.IP device discovery systems and methods
US10616244B2 (en)2006-06-122020-04-07Icontrol Networks, Inc.Activation of gateway device
US20090322567A1 (en)*2006-06-132009-12-31The Mitre CorporationFlight restriction zone detection and avoidance
US7957853B2 (en)2006-06-132011-06-07The Mitre CorporationFlight restriction zone detection and avoidance
US11175427B2 (en)2006-07-062021-11-16SeeScan, Inc.Buried utility locating systems with optimized wireless data communication
US8264226B1 (en)2006-07-062012-09-11Seektech, Inc.System and method for locating buried pipes and cables with a man portable locator and a transmitter in a mesh network
US11719846B1 (en)2006-07-062023-08-08SeeScan, Inc.Buried utility locating systems with wireless data communication including determination of cross coupling to adjacent utilities
US9746573B1 (en)2006-07-062017-08-29SeeScan, Inc.Portable buried utility locating systems with current signal data communication
US8281392B2 (en)2006-08-112012-10-02Airdefense, Inc.Methods and systems for wired equivalent privacy and Wi-Fi protected access protection
US8149733B2 (en)2006-08-252012-04-03Raytheon Bbn Technologies Corp.Systems and methods for synchronizing communication networks
US7924728B2 (en)2006-08-252011-04-12Raytheon Bbn Technologies CorpSystems and methods for energy-conscious communication in wireless ad-hoc networks
US20080080312A1 (en)*2006-09-292008-04-03Ion Geophysical CorporationSeismic Data Acquisition Using Time-Division Multiplexing
US20080080310A1 (en)*2006-09-292008-04-03Ion Geophysical CorporationSeismic Data Acquisition Systems and Methods for Managing Messages Generated by Field Units
US20080114548A1 (en)*2006-09-292008-05-15Ion Geophysical CorporationIn-Field Control Module for Managing Wireless Seismic Data Acquisition Systems and Related Methods
US20080080311A1 (en)*2006-09-292008-04-03Ion Geophysical CorporationSeismic Data Acquisition Systems and Method Utilizing a Wireline Repeater Unit
US7725264B2 (en)2006-09-292010-05-25Ion Geophysical CorporationIn-field control module for managing wireless seismic data acquisition systems and related methods
US7729202B2 (en)2006-09-292010-06-01Ion Geophysical CorporationApparatus and methods for transmitting unsolicited messages during seismic data acquisition
US8605546B2 (en)2006-09-292013-12-10Inova Ltd.Seismic data acquisition systems and method utilizing a wireline repeater unit
US7894301B2 (en)2006-09-292011-02-22INOVA, Ltd.Seismic data acquisition using time-division multiplexing
US20080080307A1 (en)*2006-09-292008-04-03Ion Geophysical CorporationApparatus and Methods for Transmitting Unsolicited Messages During Seismic Data Acquisition
US20090315725A1 (en)*2006-10-242009-12-24Hollander Milton BUniversal wireless transceiver
US8085143B2 (en)*2006-10-242011-12-27Omega Engineering, Inc.Universal wireless transceiver
WO2008056023A1 (en)2006-11-072008-05-15Mikko KohvakkaEnergy-efficient neighbor discovery for mobile wireless sensor networks
WO2008079923A1 (en)*2006-12-202008-07-03Nortel Networks LimitedSystem and method for providing power management in a sensor network
US8073554B2 (en)2006-12-202011-12-06Nortel Networks LimitedSystem and method for providing power management in a sensor network
US20080150360A1 (en)*2006-12-202008-06-26Nortel Networks LimitedSystem and Method for Providing Power Management in a Sensor Network
US12120171B2 (en)2007-01-242024-10-15Icontrol Networks, Inc.Methods and systems for data communication
US11706279B2 (en)2007-01-242023-07-18Icontrol Networks, Inc.Methods and systems for data communication
US10225314B2 (en)2007-01-242019-03-05Icontrol Networks, Inc.Methods and systems for improved system performance
US11418572B2 (en)2007-01-242022-08-16Icontrol Networks, Inc.Methods and systems for improved system performance
US10142392B2 (en)2007-01-242018-11-27Icontrol Networks, Inc.Methods and systems for improved system performance
US11412027B2 (en)2007-01-242022-08-09Icontrol Networks, Inc.Methods and systems for data communication
US20080181130A1 (en)*2007-01-292008-07-31Honeywell International Inc.Receiver-based link-layer protocol
US20080187006A1 (en)*2007-02-012008-08-07Ion Geophysical CorporationApparatus and Method for Reducing Noise in Seismic Data
US8077740B2 (en)2007-02-012011-12-13INOVA, Ltd.Apparatus and method for reducing noise in seismic data
US8982810B2 (en)2007-02-012015-03-17Inova Ltd.Apparatus and method for reducing noise in seismic data
US10657794B1 (en)2007-02-282020-05-19Icontrol Networks, Inc.Security, monitoring and automation controller access and use of legacy security control panel information
US11809174B2 (en)2007-02-282023-11-07Icontrol Networks, Inc.Method and system for managing communication connectivity
US10747216B2 (en)2007-02-282020-08-18Icontrol Networks, Inc.Method and system for communicating with and controlling an alarm system from a remote server
US9412248B1 (en)2007-02-282016-08-09Icontrol Networks, Inc.Security, monitoring and automation controller access and use of legacy security control panel information
US11194320B2 (en)2007-02-282021-12-07Icontrol Networks, Inc.Method and system for managing communication connectivity
US11132888B2 (en)2007-04-232021-09-28Icontrol Networks, Inc.Method and system for providing alternate network access
US11663902B2 (en)2007-04-232023-05-30Icontrol Networks, Inc.Method and system for providing alternate network access
US10672254B2 (en)2007-04-232020-06-02Icontrol Networks, Inc.Method and system for providing alternate network access
US9510065B2 (en)2007-04-232016-11-29Icontrol Networks, Inc.Method and system for automatically providing alternate network access for telecommunications
US10140840B2 (en)2007-04-232018-11-27Icontrol Networks, Inc.Method and system for providing alternate network access
US7884727B2 (en)*2007-05-242011-02-08Bao TranWireless occupancy and day-light sensing
US9549691B2 (en)2007-05-242017-01-24Bao TranWireless monitoring
US20100026479A1 (en)*2007-05-242010-02-04Bao TranWireless occupancy and day-light sensing
US20120139750A1 (en)*2007-05-302012-06-07Hitachi, Ltd.Sensor node
US10616075B2 (en)2007-06-122020-04-07Icontrol Networks, Inc.Communication protocols in integrated systems
US11601810B2 (en)2007-06-122023-03-07Icontrol Networks, Inc.Communication protocols in integrated systems
US10142394B2 (en)2007-06-122018-11-27Icontrol Networks, Inc.Generating risk profile using data of home monitoring and security system
US11089122B2 (en)2007-06-122021-08-10Icontrol Networks, Inc.Controlling data routing among networks
US11212192B2 (en)2007-06-122021-12-28Icontrol Networks, Inc.Communication protocols in integrated systems
US12283172B2 (en)2007-06-122025-04-22Icontrol Networks, Inc.Communication protocols in integrated systems
US12284057B2 (en)2007-06-122025-04-22Icontrol Networks, Inc.Systems and methods for device communication
US10237237B2 (en)2007-06-122019-03-19Icontrol Networks, Inc.Communication protocols in integrated systems
US11218878B2 (en)2007-06-122022-01-04Icontrol Networks, Inc.Communication protocols in integrated systems
US11237714B2 (en)2007-06-122022-02-01Control Networks, Inc.Control system user interface
US10313303B2 (en)2007-06-122019-06-04Icontrol Networks, Inc.Forming a security network including integrated security system components and network devices
US11316753B2 (en)2007-06-122022-04-26Icontrol Networks, Inc.Communication protocols in integrated systems
US12250547B2 (en)2007-06-122025-03-11Icontrol Networks, Inc.Communication protocols in integrated systems
US10339791B2 (en)2007-06-122019-07-02Icontrol Networks, Inc.Security network integrated with premise security system
US11423756B2 (en)2007-06-122022-08-23Icontrol Networks, Inc.Communication protocols in integrated systems
US12184443B2 (en)2007-06-122024-12-31Icontrol Networks, Inc.Controlling data routing among networks
US9306809B2 (en)2007-06-122016-04-05Icontrol Networks, Inc.Security system with networked touchscreen
US11582065B2 (en)2007-06-122023-02-14Icontrol Networks, Inc.Systems and methods for device communication
US10365810B2 (en)2007-06-122019-07-30Icontrol Networks, Inc.Control system user interface
US9609003B1 (en)2007-06-122017-03-28Icontrol Networks, Inc.Generating risk profile using data of home monitoring and security system
US11611568B2 (en)2007-06-122023-03-21Icontrol Networks, Inc.Communication protocols over internet protocol (IP) networks
US10382452B1 (en)2007-06-122019-08-13Icontrol Networks, Inc.Communication protocols in integrated systems
US11625161B2 (en)2007-06-122023-04-11Icontrol Networks, Inc.Control system user interface
US11894986B2 (en)2007-06-122024-02-06Icontrol Networks, Inc.Communication protocols in integrated systems
US10389736B2 (en)2007-06-122019-08-20Icontrol Networks, Inc.Communication protocols in integrated systems
US10079839B1 (en)2007-06-122018-09-18Icontrol Networks, Inc.Activation of gateway device
US10423309B2 (en)2007-06-122019-09-24Icontrol Networks, Inc.Device integration framework
US11632308B2 (en)2007-06-122023-04-18Icontrol Networks, Inc.Communication protocols in integrated systems
US10051078B2 (en)2007-06-122018-08-14Icontrol Networks, Inc.WiFi-to-serial encapsulation in systems
US11646907B2 (en)2007-06-122023-05-09Icontrol Networks, Inc.Communication protocols in integrated systems
US10444964B2 (en)2007-06-122019-10-15Icontrol Networks, Inc.Control system user interface
US10200504B2 (en)2007-06-122019-02-05Icontrol Networks, Inc.Communication protocols over internet protocol (IP) networks
US10498830B2 (en)2007-06-122019-12-03Icontrol Networks, Inc.Wi-Fi-to-serial encapsulation in systems
US11722896B2 (en)2007-06-122023-08-08Icontrol Networks, Inc.Communication protocols in integrated systems
US10523689B2 (en)2007-06-122019-12-31Icontrol Networks, Inc.Communication protocols over internet protocol (IP) networks
US10666523B2 (en)2007-06-122020-05-26Icontrol Networks, Inc.Communication protocols in integrated systems
US9531593B2 (en)2007-06-122016-12-27Icontrol Networks, Inc.Takeover processes in security network integrated with premise security system
US7940177B2 (en)2007-06-152011-05-10The Johns Hopkins UniversitySystem and methods for monitoring security zones
US20100045457A1 (en)*2007-06-152010-02-25Krill Jerry ASystem and Methods for Monitoring Security Zones
US11815969B2 (en)2007-08-102023-11-14Icontrol Networks, Inc.Integrated security system with parallel processing architecture
US8149716B2 (en)2007-08-202012-04-03Raytheon Bbn Technologies Corp.Systems and methods for adaptive routing in mobile ad-hoc networks and disruption tolerant networks
US20090129316A1 (en)*2007-08-202009-05-21Bbn Technologies Corp.Systems and methods for adaptive routing in mobile ad-hoc networks and disruption tolerant networks
US11831462B2 (en)2007-08-242023-11-28Icontrol Networks, Inc.Controlling data routing in premises management systems
US12301379B2 (en)2007-08-242025-05-13Icontrol Networks, Inc.Controlling data routing in premises management systems
US20100207776A1 (en)*2007-09-212010-08-19Shinji TakunoCommunication device
US8281174B2 (en)*2007-10-092012-10-02Endress + Hauser Process Solutions AgEnergy saving operation of a hardwired communication interface and a function unit provided for the communication interface of a field device
US20100222895A1 (en)*2007-10-092010-09-02Christian SeilerEnergy-saving operation of a hard-wired communication interface on a field device
US20100254302A1 (en)*2007-10-302010-10-07Sung Young JungMethod of routing path in wireless sensor networks based on clusters
US8432831B2 (en)2007-10-302013-04-30Ajou University Industry Cooperation FoundationMethod of routing path in wireless sensor networks based on clusters
WO2009057833A1 (en)*2007-10-302009-05-07Ajou University Industry Cooperation FoundationMethod of routing path in wireless sensor networks based on clusters
US8005108B1 (en)2007-10-312011-08-23Memsic Transducer Systems Co., Ltd.Fast deployment of modules in adaptive network
US7995467B2 (en)2007-12-122011-08-09Synapsense CorporationApparatus and method for adapting to failures in gateway devices in mesh networks
US20090154343A1 (en)*2007-12-122009-06-18Synapsanse CorporationApparatus and method for adapting to failures in gateway devices in mesh networks
US20090154481A1 (en)*2007-12-122009-06-18Synapsense CorporationApparatus and method for adaptive data packet scheduling in mesh networks
US8351369B2 (en)2007-12-122013-01-08Synapsense CorporationApparatus and method for adaptive data packet scheduling in mesh networks
US8331282B2 (en)2007-12-282012-12-11Synapsense CorporationApparatus and method for adaptive channel hopping in mesh networks
US8885548B2 (en)2007-12-282014-11-11Synapsense CorporationApparatus and method for admitting new devices in a self-healing, self-organizing mesh network
US20090168796A1 (en)*2007-12-282009-07-02Synapsense CorporationApparatus and method for adaptive channel hopping in mesh networks
US11916928B2 (en)2008-01-242024-02-27Icontrol Networks, Inc.Communication protocols over internet protocol (IP) networks
US20100031324A1 (en)*2008-03-072010-02-04Strich Ronald FApparatus and method for dynamic licensing access to wireless network information
US8149102B1 (en)2008-03-272012-04-03Memsic Transducer Systems Co., Ltd.Reconfigurable interface operable with multiple types of sensors and actuators
US8577479B2 (en)*2008-04-282013-11-05Sony CorporationPower transmitting apparatus, power receiving apparatus, power transmission method, program, and power transmission system
US20090271047A1 (en)*2008-04-282009-10-29Masataka WakamatsuPower transmitting apparatus, power receiving apparatus, power transmission method, program, and power transmission system
US11308440B2 (en)2008-05-162022-04-19Google LlcMaintaining information facilitating deterministic network routing
US10664792B2 (en)2008-05-162020-05-26Google LlcMaintaining information facilitating deterministic network routing
US9488743B2 (en)2008-05-222016-11-08Fairfield Industries, Inc.Land based unit for seismic data acquisition
US10045455B2 (en)2008-05-222018-08-07Fairfield Industries, Inc.Land based unit for seismic data acquisition
US20090290453A1 (en)*2008-05-222009-11-26Ray Clifford HLand based unit for seismic data acquisition
US8611191B2 (en)2008-05-222013-12-17Fairfield Industries, Inc.Land based unit for seismic data acquisition
US11816323B2 (en)2008-06-252023-11-14Icontrol Networks, Inc.Automation system user interface
US8473898B2 (en)2008-07-082013-06-25Synapsense CorporationApparatus and method for building integrated distributed applications for use with a mesh network
CN101360051B (en)*2008-07-112011-07-20西安电子科技大学Energy efficient wireless sensor network routing method
US11758026B2 (en)2008-08-112023-09-12Icontrol Networks, Inc.Virtual device systems and methods
US11729255B2 (en)2008-08-112023-08-15Icontrol Networks, Inc.Integrated cloud system with lightweight gateway for premises automation
US12267385B2 (en)2008-08-112025-04-01Icontrol Networks, Inc.Integrated cloud system with lightweight gateway for premises automation
US11190578B2 (en)2008-08-112021-11-30Icontrol Networks, Inc.Integrated cloud system with lightweight gateway for premises automation
US11616659B2 (en)2008-08-112023-03-28Icontrol Networks, Inc.Integrated cloud system for premises automation
US11962672B2 (en)2008-08-112024-04-16Icontrol Networks, Inc.Virtual device systems and methods
US10530839B2 (en)2008-08-112020-01-07Icontrol Networks, Inc.Integrated cloud system with lightweight gateway for premises automation
US11641391B2 (en)2008-08-112023-05-02Icontrol Networks Inc.Integrated cloud system with lightweight gateway for premises automation
US11711234B2 (en)2008-08-112023-07-25Icontrol Networks, Inc.Integrated cloud system for premises automation
US11258625B2 (en)2008-08-112022-02-22Icontrol Networks, Inc.Mobile premises automation platform
US12244663B2 (en)2008-08-112025-03-04Icontrol Networks, Inc.Integrated cloud system with lightweight gateway for premises automation
US11316958B2 (en)2008-08-112022-04-26Icontrol Networks, Inc.Virtual device systems and methods
US11792036B2 (en)2008-08-112023-10-17Icontrol Networks, Inc.Mobile premises automation platform
US10522026B2 (en)2008-08-112019-12-31Icontrol Networks, Inc.Automation system user interface with three-dimensional display
US11368327B2 (en)2008-08-112022-06-21Icontrol Networks, Inc.Integrated cloud system for premises automation
US12341865B2 (en)2008-08-112025-06-24Icontrol Networks, Inc.Virtual device systems and methods
US20100039933A1 (en)*2008-08-122010-02-18General AtomicsMethod and system for network setup and maintenance and medium access control for a wireless sensor network
US8199635B2 (en)2008-08-122012-06-12General AtomicsMethod and system for network setup and maintenance and medium access control for a wireless sensor network
US20160274759A1 (en)2008-08-252016-09-22Paul J. DawesSecurity system with networked touchscreen and gateway
US10375253B2 (en)2008-08-252019-08-06Icontrol Networks, Inc.Security system with networked touchscreen and gateway
US10911256B2 (en)2008-09-082021-02-02Tendril Ea, LlcConsumer directed energy management systems and methods
US20100070102A1 (en)*2008-09-082010-03-18Tendril Networks, Inc.Collaborative energy benchmarking systems and methods
US9329212B2 (en)2008-09-082016-05-03Tendril Networks, Inc.Collaborative energy benchmarking systems and methods
US8977404B2 (en)2008-09-082015-03-10Tendril Networks, Inc.Collaborative energy benchmarking systems and methods
US9722813B2 (en)2008-09-082017-08-01Tendril Networks, Inc.Consumer directed energy management systems and methods
US8532003B2 (en)*2008-10-032013-09-10Synapsense CorporationApparatus and method for managing packet routing through internally-powered network devices in wireless sensor networks
US20100085903A1 (en)*2008-10-032010-04-08Synapsense CorporationApparatus and method for managing packet routing through internally-powered network devices in wireless sensor networks
US9628440B2 (en)2008-11-122017-04-18Icontrol Networks, Inc.Takeover processes in security network integrated with premise security system
US8538584B2 (en)2008-12-302013-09-17Synapsense CorporationApparatus and method for controlling environmental conditions in a data center using wireless mesh networks
US8600560B2 (en)2008-12-302013-12-03Synapsense CorporationApparatus and method for controlling computer room air conditioning units (CRACs) in data centers
US20100177708A1 (en)*2009-01-142010-07-15Synapsense CorporationApparatus and method for establishing data communication in a time-synchronized mesh wireless network during time synchronization failures
US8761084B2 (en)2009-01-142014-06-24Synapsense CorporationApparatus and method for establishing data communication in a time-synchronized mesh wireless network during time synchronization failures
US20100278086A1 (en)*2009-01-152010-11-04Kishore PochirajuMethod and apparatus for adaptive transmission of sensor data with latency controls
US8462681B2 (en)2009-01-152013-06-11The Trustees Of Stevens Institute Of TechnologyMethod and apparatus for adaptive transmission of sensor data with latency controls
US8787246B2 (en)2009-02-032014-07-22Ipco, LlcSystems and methods for facilitating wireless network communication, satellite-based wireless network systems, and aircraft-based wireless network systems, and related methods
US10275999B2 (en)2009-04-302019-04-30Icontrol Networks, Inc.Server-based notification of alarm event subsequent to communication failure with armed security system
US11129084B2 (en)2009-04-302021-09-21Icontrol Networks, Inc.Notification of event subsequent to communication failure with security system
US10674428B2 (en)2009-04-302020-06-02Icontrol Networks, Inc.Hardware configurable security, monitoring and automation controller having modular communication protocol interfaces
US8160838B2 (en)2009-04-302012-04-17Synapsense CorporationApparatus and method for visualizing environmental conditions in a data center using wireless sensor networks
US10237806B2 (en)2009-04-302019-03-19Icontrol Networks, Inc.Activation of a home automation controller
US12127095B2 (en)2009-04-302024-10-22Icontrol Networks, Inc.Custom content for premises management
US11356926B2 (en)2009-04-302022-06-07Icontrol Networks, Inc.Hardware configurable security, monitoring and automation controller having modular communication protocol interfaces
US10332363B2 (en)2009-04-302019-06-25Icontrol Networks, Inc.Controller and interface for home security, monitoring and automation having customizable audio alerts for SMA events
US11223998B2 (en)2009-04-302022-01-11Icontrol Networks, Inc.Security, monitoring and automation controller access and use of legacy security control panel information
US11778534B2 (en)2009-04-302023-10-03Icontrol Networks, Inc.Hardware configurable security, monitoring and automation controller having modular communication protocol interfaces
US11856502B2 (en)2009-04-302023-12-26Icontrol Networks, Inc.Method, system and apparatus for automated inventory reporting of security, monitoring and automation hardware and software at customer premises
US11601865B2 (en)2009-04-302023-03-07Icontrol Networks, Inc.Server-based notification of alarm event subsequent to communication failure with armed security system
US11553399B2 (en)2009-04-302023-01-10Icontrol Networks, Inc.Custom content for premises management
US11997584B2 (en)2009-04-302024-05-28Icontrol Networks, Inc.Activation of a home automation controller
US9426720B2 (en)2009-04-302016-08-23Icontrol Networks, Inc.Controller and interface for home security, monitoring and automation having customizable audio alerts for SMA events
US11284331B2 (en)2009-04-302022-03-22Icontrol Networks, Inc.Server-based notification of alarm event subsequent to communication failure with armed security system
US11665617B2 (en)2009-04-302023-05-30Icontrol Networks, Inc.Server-based notification of alarm event subsequent to communication failure with armed security system
US12245131B2 (en)2009-04-302025-03-04Icontrol Networks, Inc.Security, monitoring and automation controller access and use of legacy security control panel information
US10813034B2 (en)2009-04-302020-10-20Icontrol Networks, Inc.Method, system and apparatus for management of applications for an SMA controller
US8472868B2 (en)*2009-05-062013-06-25Telefonaktiebolaget Lm Ericsson (Publ)Method and apparatus for MIMO repeater chains in a wireless communication network
US20100284446A1 (en)*2009-05-062010-11-11Fenghao MuMethod and Apparatus for MIMO Repeater Chains in a Wireless Communication Network
US20110022242A1 (en)*2009-06-082011-01-27GroundedPower, Inc.Methods and systems for managing energy usage in buildings
US9026261B2 (en)2009-06-082015-05-05Tendril Networks, Inc.Methods and systems for managing energy usage in buildings
US20110050461A1 (en)*2009-08-262011-03-03Raytheon CompanyNetwork of Traffic Behavior-monitoring Unattended Ground Sensors (NeTBUGS)
US8368559B2 (en)2009-08-262013-02-05Raytheon CompanyNetwork of traffic behavior-monitoring unattended ground sensors (NeTBUGS)
WO2011025563A1 (en)*2009-08-262011-03-03Raytheon CompanyNetwork of traffic behavior-monitoring unattended ground sensors (netbugs)
US8624729B2 (en)2009-09-172014-01-07Defendec Inc.Monitoring method, a monitoring system and a sensor station
WO2011033466A1 (en)2009-09-172011-03-24Defendec IncA monitoring method, a monitoring system and a sensor station
US20110069302A1 (en)*2009-09-182011-03-24Qinetiq LimitedWide Area Seismic Detection
US9435902B2 (en)*2009-09-182016-09-06Optasense Holdings Ltd.Wide area seismic detection
US8521428B1 (en)2009-10-152013-08-27Moog Inc.Heading determination using sensors mounted on rotatable assembly
US8478319B2 (en)2010-05-122013-07-02Information System Technologies, Inc.Feature extraction and data compression system and method for distributed sensor networks
US8779921B1 (en)2010-05-142014-07-15Solio Security, Inc.Adaptive security network, sensor node and method for detecting anomalous events in a security network
US8855011B2 (en)2010-07-122014-10-07University Of Southern CaliforniaDistributed transforms for efficient data gathering in sensor networks
US8811377B1 (en)2010-08-302014-08-19Synapsense CorporationApparatus and method for instrumenting devices to measure power usage using a multi-tier wireless network
US9007050B2 (en)2010-09-172015-04-14The Toro CompanySoil moisture sensor with improved enclosure
US10062273B2 (en)2010-09-282018-08-28Icontrol Networks, Inc.Integrated security system with parallel processing architecture
US11398147B2 (en)2010-09-282022-07-26Icontrol Networks, Inc.Method, system and apparatus for automated reporting of account and sensor zone information to a central station
US11900790B2 (en)2010-09-282024-02-13Icontrol Networks, Inc.Method, system and apparatus for automated reporting of account and sensor zone information to a central station
US10127802B2 (en)2010-09-282018-11-13Icontrol Networks, Inc.Integrated security system with parallel processing architecture
US9349276B2 (en)2010-09-282016-05-24Icontrol Networks, Inc.Automated reporting of account and sensor information
US10223903B2 (en)2010-09-282019-03-05Icontrol Networks, Inc.Integrated security system with parallel processing architecture
US11750414B2 (en)*2010-12-162023-09-05Icontrol Networks, Inc.Bidirectional security sensor communication for a premises security system
US20230362029A1 (en)*2010-12-162023-11-09Icontrol Networks, Inc.Bidirectional security sensor communication for a premises security system
US12088425B2 (en)*2010-12-162024-09-10Icontrol Networks, Inc.Bidirectional security sensor communication for a premises security system
US20120154126A1 (en)*2010-12-162012-06-21Alan Wade CohnBidirectional security sensor communication for a premises security system
US10078958B2 (en)2010-12-172018-09-18Icontrol Networks, Inc.Method and system for logging security event data
US12100287B2 (en)2010-12-172024-09-24Icontrol Networks, Inc.Method and system for processing security event data
US10741057B2 (en)2010-12-172020-08-11Icontrol Networks, Inc.Method and system for processing security event data
US11341840B2 (en)2010-12-172022-05-24Icontrol Networks, Inc.Method and system for processing security event data
US9372272B2 (en)2010-12-172016-06-21Seismic Warning Systems, Inc.Earthquake warning system
US9729342B2 (en)2010-12-202017-08-08Icontrol Networks, Inc.Defining and implementing sensor triggered response rules
US11240059B2 (en)2010-12-202022-02-01Icontrol Networks, Inc.Defining and implementing sensor triggered response rules
US12021649B2 (en)2010-12-202024-06-25Icontrol Networks, Inc.Defining and implementing sensor triggered response rules
TWI469665B (en)*2010-12-222015-01-11Nat Univ Tsing HuaMethod for selecting sensor nodes
US20120166155A1 (en)*2010-12-222012-06-28National Tsing Hua UniversityMethod for Selecting Sensor Nodes
US8687058B2 (en)*2010-12-222014-04-01National Tsing Hua UniversityMethod for selecting sensor nodes
AU2012222079B2 (en)*2011-02-262015-10-01Seismic Warning Systems, Inc.Customizable policy engine
US9082286B2 (en)2011-02-262015-07-14Seismic Warning Systems, Inc.Customizable policy engine
CN102157047A (en)*2011-04-212011-08-17青海省太阳能电力有限责任公司Detecting and alarming system for electric power equipment
US9077183B2 (en)2011-09-062015-07-07Portland State UniversityDistributed low-power wireless monitoring
US8981946B2 (en)2011-10-242015-03-17The Toro CompanySoil moisture sensor
US9326462B2 (en)2011-10-242016-05-03The Toro CompanySoil moisture sensor
US9318011B2 (en)2012-03-202016-04-19Tyco Fire & Security GmbhRetail item management using wireless sensor networks
US9501916B2 (en)2012-03-202016-11-22Tyco Fire & Security GmbhInventory management system using event filters for wireless sensor network data
US12003387B2 (en)2012-06-272024-06-04Comcast Cable Communications, LlcControl system user interface
US11782465B2 (en)2012-08-012023-10-10Tendril Oe, LlcOptimization of energy use through model-based simulations
US10678279B2 (en)2012-08-012020-06-09Tendril Oe, LlcOptimization of energy use through model-based simulations
US11385664B2 (en)2012-08-012022-07-12Tendril Oe, LlcMethods and apparatus for achieving energy consumption goals through model-based simulations
US20160197920A1 (en)*2012-11-292016-07-07Jeffry David AronsonScalable full spectrum cyber determining machine
US20190141040A1 (en)*2012-11-292019-05-09Jeffry David AronsonScalable universal full spectrum cyber cyber determining process
US10462139B2 (en)*2012-11-292019-10-29Jeffry David AronsonScalable universal full spectrum cyber cyber determining process
US9635025B2 (en)*2012-11-292017-04-25Jeffry David AronsonScalable full spectrum cyber determining machine
US9423779B2 (en)2013-02-062016-08-23Tendril Networks, Inc.Dynamically adaptive personalized smart energy profiles
US9576472B2 (en)2013-02-062017-02-21Tendril Networks, Inc.Real-time monitoring and dissemination of energy consumption and production data
US11327457B2 (en)2013-02-062022-05-10Tendril Ea, LlcDynamically adaptive personalized smart energy profiles
US10782666B2 (en)2013-02-062020-09-22Tendril Ea, LlcDynamically adaptive personalized smart energy profiles
US12019423B2 (en)2013-02-062024-06-25Tendril Ea, LlcDynamically adaptive personalized smart energy profiles
US11720075B2 (en)2013-02-062023-08-08Tendril Ea, LlcDynamically adaptive personalized smart energy profiles
US9310815B2 (en)2013-02-122016-04-12Tendril Networks, Inc.Setpoint adjustment-based duty cycling
US11892182B2 (en)2013-02-122024-02-06Uplight, Inc.Setpoint adjustment-based duty cycling
US11042141B2 (en)2013-02-122021-06-22Uplight, Inc.Setpoint adjustment-based duty cycling
US10379508B2 (en)2013-02-122019-08-13Tendril Networks, Inc.Setpoint adjustment-based duty cycling
US11553579B2 (en)2013-03-142023-01-10Icontrol Networks, Inc.Three-way switch
US9928975B1 (en)2013-03-142018-03-27Icontrol Networks, Inc.Three-way switch
US10117191B2 (en)2013-03-152018-10-30Icontrol Networks, Inc.Adaptive power modulation
US9867143B1 (en)2013-03-152018-01-09Icontrol Networks, Inc.Adaptive Power Modulation
US10659179B2 (en)2013-03-152020-05-19Icontrol Networks, Inc.Adaptive power modulation
US9287727B1 (en)2013-03-152016-03-15Icontrol Networks, Inc.Temporal voltage adaptive lithium battery charger
EP2976738B1 (en)*2013-03-192019-07-17Sensormatic Electronics, LLCRetail item management using wireless sensor networks
US11296950B2 (en)2013-06-272022-04-05Icontrol Networks, Inc.Control system user interface
US10348575B2 (en)2013-06-272019-07-09Icontrol Networks, Inc.Control system user interface
US10841668B2 (en)2013-08-092020-11-17Icn Acquisition, LlcSystem, method and apparatus for remote monitoring
US11432055B2 (en)2013-08-092022-08-30Icn Acquisition, LlcSystem, method and apparatus for remote monitoring
US11438553B1 (en)2013-08-092022-09-06Icn Acquisition, LlcSystem, method and apparatus for remote monitoring
US10645347B2 (en)2013-08-092020-05-05Icn Acquisition, LlcSystem, method and apparatus for remote monitoring
US12219307B2 (en)2013-08-092025-02-04Icn Acquisition, LlcSystem, method and apparatus for remote monitoring
US11722806B2 (en)2013-08-092023-08-08Icn Acquisition, LlcSystem, method and apparatus for remote monitoring
US10379873B2 (en)2014-02-282019-08-13Tyco Fire & Security GmbhDistributed processing system
US11747430B2 (en)2014-02-282023-09-05Tyco Fire & Security GmbhCorrelation of sensory inputs to identify unauthorized persons
US10878323B2 (en)2014-02-282020-12-29Tyco Fire & Security GmbhRules engine combined with message routing
US12001852B2 (en)2014-02-282024-06-04Tyco Fire & Security GmbhDistributed processing system
US10854059B2 (en)2014-02-282020-12-01Tyco Fire & Security GmbhWireless sensor network
US11405463B2 (en)2014-03-032022-08-02Icontrol Networks, Inc.Media content management
US11146637B2 (en)2014-03-032021-10-12Icontrol Networks, Inc.Media content management
US11943301B2 (en)2014-03-032024-03-26Icontrol Networks, Inc.Media content management
US11889239B2 (en)2014-06-032024-01-30Applied Minds, LlcColor night vision cameras, systems, and methods thereof
US9578511B2 (en)*2014-06-302017-02-21Libre Wireless Technologies, Inc.Systems and techniques for wireless device configuration
RU2568142C1 (en)*2014-07-022015-11-10Федеральное государственное бюджетное образовательное учреждение высшего профессионального образования "Пензенский государственный университет" (ФГБОУ ВПО ПГУ)Method of detecting moving ground objects from seismic signal
US9921188B2 (en)*2014-09-182018-03-20Kabushiki Kaisha ToshibaDetection system and detection method
US20160084803A1 (en)*2014-09-182016-03-24Kabushiki Kaisha ToshibaDetection system and detection method
US20160150056A1 (en)*2014-11-212016-05-26Atmel CorporationMulti-protocol frame filter
US20160191855A1 (en)*2014-12-302016-06-30Invent.ly LLCSensor Deployment With Target Regions
US11258627B2 (en)2015-07-242022-02-22Hewlett-Packard Development Company, L.P.Sensor communications by vibrations
US10862699B2 (en)2015-07-242020-12-08Hewlett-Packard Development Company, L.P.Sensor communications by vibrations
US10133684B2 (en)*2015-09-112018-11-20Robert Bosch GmbhIntegrated circuit having ADC, DSP and computing units
CN105222829A (en)*2015-10-152016-01-06合肥谢尔网络科技有限公司A kind of agriculture Internet of Things environment information acquisition device
US10970986B2 (en)*2015-12-152021-04-06Tracfone Wireless, Inc.Device, system, and process for automatic fall detection analysis
US10665079B2 (en)*2015-12-152020-05-26Tracfone Wireless, Inc.Device, system, and process for automatic fall detection analysis
CN105575092A (en)*2016-01-192016-05-11王迅Networking method of wireless sensor network
US20170270463A1 (en)*2016-03-162017-09-21Triax Technologies, Inc.System and interfaces for managing workplace events
US11170616B2 (en)2016-03-162021-11-09Triax Technologies, Inc.System and interfaces for managing workplace events
US11810032B2 (en)2016-03-162023-11-07Triax Technologies, Inc.Systems and methods for low-energy wireless applications using networked wearable sensors
US10891567B2 (en)2016-03-162021-01-12Triax Technologies, Inc.System and interfaces for managing workplace events
US10878352B2 (en)2016-03-162020-12-29Triax Technologies, Inc.Mesh based system and method for tracking worksite events experienced by workers via a wearable sensor
US10692024B2 (en)*2016-03-162020-06-23Triax Technologies, Inc.Wireless mesh network system for monitoring worksite events including detecting false events
US10769562B2 (en)2016-03-162020-09-08Triax Technologies, Inc.Sensor based system and method for authorizing operation of worksite equipment using a locally stored access control list
US11230375B1 (en)2016-03-312022-01-25Steven M. HoffbergSteerable rotating projectile
US10118696B1 (en)2016-03-312018-11-06Steven M. HoffbergSteerable rotating projectile
US11709465B2 (en)2016-04-012023-07-25Tendril Oe, LlcOrchestrated energy
US10866568B2 (en)2016-04-012020-12-15Tendril Oe, LlcOrchestrated energy
US10667220B2 (en)2016-06-072020-05-26Carrier CorporationSystem and method for adjusting power in a wireless sensor
US10338193B2 (en)*2016-10-072019-07-02Marko BekoApparatus and method for RSS/AoA target 3-D localization in wireless networks
US11712637B1 (en)2018-03-232023-08-01Steven M. HoffbergSteerable disk or ball
US11802707B2 (en)2019-07-242023-10-31Uplight, Inc.Adaptive thermal comfort learning for optimized HVAC control
US11149975B2 (en)2019-07-242021-10-19Uplight, Inc.Adaptive thermal comfort learning for optimized HVAC control
US12163682B2 (en)2019-07-242024-12-10Uplight, Inc.Adaptive thermal comfort learning for optimized HVAC control
FR3099589A1 (en)*2019-08-012021-02-05A3Ip autonomous intelligent sensor for measuring physical data of an environment comprising at least one geophone
US11621730B2 (en)2021-02-092023-04-04International Business Machines CorporationTransmitters with dynamic ranges extending beyond supply rails
US12395128B1 (en)2025-03-062025-08-19Qdacomm LlcDecomposition of signals into a sum of truncated fourier series
US12401997B1 (en)2025-03-062025-08-26Qdacomm LlcPhysical layer security

Similar Documents

PublicationPublication DateTitle
US6208247B1 (en)Wireless integrated sensor network using multiple relayed communications
US6414955B1 (en)Distributed topology learning method and apparatus for wireless networks
KR102000241B1 (en) Motion detection based on repeated wireless transmissions
Bhuiyan et al.e-Sampling: Event-sensitive autonomous adaptive sensing and low-cost monitoring in networked sensing systems
US20210360344A1 (en)System and method for processing multi-directional audio and rf backscattered signals
US8730088B2 (en)Radar coherent processing interval scheduling via ad hoc network
US20220236395A1 (en)System and method for processing multi-directional ultra wide band and frequency modulated continuous wave wireless backscattered signals
US9628365B2 (en)Apparatus for internetworked wireless integrated network sensors (WINS)
EP0250280B1 (en)Seismic signal transmission system using radio relays
US9128202B2 (en)Wireless data acquisition network and operating methods
KR100191622B1 (en)Commucation device and its method of sound wave
US10945211B2 (en)Underwater power saving mechanism for use in an communication network
Bhuiyan et al.Energy and bandwidth-efficient wireless sensor networks for monitoring high-frequency events
WO2001026334A9 (en)Method and apparatus for sensor networking
US4630314A (en)Meteor burst communication system
WO2001026068A1 (en)Wireless networked sensors
EP1995609B1 (en)Seismic data acquisition
Fourniol et al.Low-power wake-up system based on frequency analysis for environmental internet of things
US20050200480A1 (en)System and method for monitoring the occurrence of situational and environmental events using distributed sensors
Casciati et al.Architecture optimization for wireless sensor networks
Aderohunmu et al.Swiftnet: A data acquisition protocol for fast-reactive monitoring applications
Buo-Shehri et al.A New Vision Using Sensor Technology For Environmental Monitoring System In the State of Kuwait
Al-Mathkouri et al.SENSOR TECHNOLOGY SELECTION FOR ENVIRONMENTAL MONITORING Ahmed Bou-Shehri Kuwait University Electrical Engineering Department
MontgomerySensor platforms and wireless networks
Ling et al.Intelligent gain system based on complex and dynamical networks model

Legal Events

DateCodeTitleDescription
ASAssignment

Owner name:ROCKWELL SCIENCE CENTER, LLC, CALIFORNIA

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNORS:AGRE, JONATHAN R.;CLARE, LOREN P.;MARCY, HENRY O.;AND OTHERS;REEL/FRAME:009688/0455;SIGNING DATES FROM 19980923 TO 19981021

STCFInformation on status: patent grant

Free format text:PATENTED CASE

ASAssignment

Owner name:BRUGGERE, THOMAS, AS SECURED PARTY, OREGON

Free format text:GRANT OF SECURITY INTEREST PATENTS;ASSIGNOR:SENSORIA CORPORATION;REEL/FRAME:013438/0983

Effective date:20021104

Owner name:HUMMER WINBLAD TECHNOLOGY FUND, IV, L.P., AS SECUR

Free format text:GRANT OF SECURITY INTEREST PATENTS;ASSIGNOR:SENSORIA CORPORATION;REEL/FRAME:013438/0983

Effective date:20021104

Owner name:HUMMER WINBLAD VENTURE PARTNERS COLLATERAL AGENT A

Free format text:GRANT OF SECURITY INTEREST PATENTS;ASSIGNOR:SENSORIA CORPORATION;REEL/FRAME:013438/0983

Effective date:20021104

FPAYFee payment

Year of fee payment:4

ASAssignment

Owner name:HUMMER WINBLAD VENTURE PARTNERS IV, L.P., CALIFORN

Free format text:SECURITY AGREEMENT;ASSIGNOR:SENSORIA CORPORATION;REEL/FRAME:017996/0020

Effective date:20060718

ASAssignment

Owner name:ROCKWELL SCIENTIFIC LICENSING, LLC, CALIFORNIA

Free format text:CHANGE OF NAME;ASSIGNOR:INNOVATIVE TECHNOLOGY LICENSING, LLC;REEL/FRAME:018160/0250

Effective date:20030919

Owner name:ROCKWELL TECHNOLOGIES, LLC, CALIFORNIA

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:ROCKWELL SCIENCE CENTER, LLC;REEL/FRAME:018160/0122

Effective date:20000330

Owner name:INNOVATIVE TECHNOLOGY LICENSING, LLC, CALIFORNIA

Free format text:CHANGE OF NAME;ASSIGNOR:ROCKWELL TECHNOLOGIES, LLC;REEL/FRAME:018160/0240

Effective date:20010628

ASAssignment

Owner name:TELEDYNE LICENSING, LLC, CALIFORNIA

Free format text:CHANGE OF NAME;ASSIGNOR:ROCKWELL SCIENTIFIC LICENSING, LLC;REEL/FRAME:018590/0776

Effective date:20060918

FPAYFee payment

Year of fee payment:8

FEPPFee payment procedure

Free format text:PAYOR NUMBER ASSIGNED (ORIGINAL EVENT CODE: ASPN); ENTITY STATUS OF PATENT OWNER: LARGE ENTITY

ASAssignment

Owner name:SKYWORKS SOLUTIONS, INC., MASSACHUSETTS

Free format text:ASSIGNMENT OF ASSIGNORS INTEREST;ASSIGNOR:TELEDYNE LICENSING, LLC;REEL/FRAME:023741/0123

Effective date:20090824

FPAYFee payment

Year of fee payment:12


[8]ページ先頭

©2009-2025 Movatter.jp